The Experts below are selected from a list of 360 Experts worldwide ranked by ideXlab platform
Nancy L Saccone - One of the best experts on this subject based on the ideXlab platform.
-
variants in the chrna5 chrna3 chrnb4 region of chromosome 15 predict gastrointestinal adverse events in the transdisciplinary tobacco use research center smoking cessation trial
Nicotine & Tobacco Research, 2019Co-Authors: Robert Culverhouse, Lishiun Chen, Nancy L Saccone, Timothy B Baker, Megan E Piper, Laura J BierutAbstract:INTRODUCTION: Reducing adverse events from pharmacologic treatment is an important goal of precision medicine and identifying genetic predictors of adverse events is a step towards this goal. In 2012 King et al. reported associations between genetic variants and adverse events in a placebo-controlled smoking cessation trial of varenicline and bupropion. Strong associations were found between gastrointestinal adverse events and 11 variants in the CHRNA5-CHRNA3-CHRNB4 region of chromosome 15, a region repeatedly associated with smoking-related phenotypes. Our goal was to replicate, in an independent sample, the impact of variants in the CHRNA5-CHRNA3-CHRNB4 region on gastrointestinal adverse events, and to extend the analyses to adherence and smoking cessation. METHODS: The University of Wisconsin Transdisciplinary Tobacco Use Research Center (TTURC) conducted a multi-armed, placebo-controlled smoking cessation trial of bupropion and nicotine replacement therapy (NRT) that included 985 genotyped European-ancestry participants. We evaluated relations between our key variables using logistic regression. RESULTS: Gastrointestinal adverse events were experienced by 31.6% of the TTURC participants. Each of the CHRNA5-CHRNA3-CHRNB4 associations from the King study was found in TTURC, with the same direction of effect. Neither these variants nor the gastrointestinal adverse events themselves were associated with adherence to medication or successful smoking cessation. CONCLUSIONS: Variants in the CHRNA5-CHRNA3-CHRNB4 region of chromosome 15 are associated with gastrointestinal adverse events in smoking cessation. Additional independent variants in this region strengthen the association. The consistency between the results of these two independent studies supports the conclusion that these findings reflect biological response to the use of smoking cessation medication. IMPLICATIONS: The fact that our findings from the TTURC smoking cessation trial, support the independent findings of King et al. suggest that associations of variants in the CHRNA5-CHRNA3-CHRNB4 region of chromosome 15 with gastrointestinal adverse events while taking medications for smoking cessation reflect biology. However, although adherence to medication was a strong predictor of successful smoking cessation in TTURC, neither adverse events nor the genetic variants associated with them predicted either adherence or successful cessation in this study. Thus, although we should strive to minimize adverse events during treatment, we should not expect that to increase successful smoking cessation substantially.
-
distinct loci in the chrna5 chrna3 chrnb4 gene cluster are associated with onset of regular smoking
Genetic Epidemiology, 2013Co-Authors: Sarah H Stephens, Nicole R Hoft, Robin C Corley, Christian J. Hopfer, Nancy L Saccone, Sandra Maria Hartz, Naomi Breslau, Hilary Coon, John K Hewitt, Xiangning ChenAbstract:Neuronal nicotinic acetylcholine receptor (nAChR) genes (CHRNA5/CHRNA3/CHRNB4) have been reproducibly associated with nicotine dependence, smoking behaviors, and lung cancer risk. Of the few reports that have focused on early smoking behaviors, association results have been mixed. This meta-analysis examines early smoking phenotypes and SNPs in the gene cluster to determine: (1) whether the most robust association signal in this region (rs16969968) for other smoking behaviors is also associated with early behaviors, and/or (2) if additional statistically independent signals are important in early smoking. We focused on two phenotypes: age of tobacco initiation (AOI) and age of first regular tobacco use (AOS). This study included 56,034 subjects (41 groups) spanning nine countries and evaluated five SNPs including rs1948, rs16969968, rs578776, rs588765, and rs684513. Each dataset was analyzed using a centrally generated script. Meta-analyses were conducted from summary statistics. AOS yielded significant associations with SNPs rs578776 (beta = 0.02, P = 0.004), rs1948 (beta = 0.023, P = 0.018), and rs684513 (beta = 0.032, P = 0.017), indicating protective effects. There were no significant associations for the AOI phenotype. Importantly, rs16969968, the most replicated signal in this region for nicotine dependence, cigarettes per day, and cotinine levels, was not associated with AOI (P = 0.59) or AOS (P = 0.92). These results provide important insight into the complexity of smoking behavior phenotypes, and suggest that association signals in the CHRNA5/A3/B4 gene cluster affecting early smoking behaviors may be different from those affecting the mature nicotine dependence phenotype.
-
multiple independent loci at chromosome 15q25 1 affect smoking quantity a meta analysis and comparison with lung cancer and copd
PLOS Genetics, 2010Co-Authors: Robert Culverhouse, Kaisu Keskitalovuokko, Xiangning Chen, Nancy L Saccone, Dale S. Cannon, Taehwi Schwantesan, Sven Cichon, Ina Giegling, Xiangyang KongAbstract:Recently, genetic association findings for nicotine dependence, smoking behavior, and smoking-related diseases converged to implicate the chromosome 15q25.1 region, which includes the CHRNA5-CHRNA3-CHRNB4 cholinergic nicotinic receptor subunit genes. In particular, association with the nonsynonymous CHRNA5 SNP rs16969968 and correlates has been replicated in several independent studies. Extensive genotyping of this region has suggested additional statistically distinct signals for nicotine dependence, tagged by rs578776 and rs588765. One goal of the Consortium for the Genetic Analysis of Smoking Phenotypes (CGASP) is to elucidate the associations among these markers and dichotomous smoking quantity (heavy versus light smoking), lung cancer, and chronic obstructive pulmonary disease (COPD). We performed a meta-analysis across 34 datasets of European-ancestry subjects, including 38,617 smokers who were assessed for cigarettes-per-day, 7,700 lung cancer cases and 5,914 lung-cancer-free controls (all smokers), and 2,614 COPD cases and 3,568 COPD-free controls (all smokers). We demonstrate statistically independent associations of rs16969968 and rs588765 with smoking (mutually adjusted p-values < 10(-35) and < 10(-8) respectively). Because the risk alleles at these loci are negatively correlated, their association with smoking is stronger in the joint model than when each SNP is analyzed alone. Rs578776 also demonstrates association with smoking after adjustment for rs16969968 (p < 10(-6)). In models adjusting for cigarettes-per-day, we confirm the association between rs16969968 and lung cancer (p < 10(-20)) and observe a nominally significant association with COPD (p = 0.01); the other loci are not significantly associated with either lung cancer or COPD after adjusting for rs16969968. This study provides strong evidence that multiple statistically distinct loci in this region affect smoking behavior. This study is also the first report of association between rs588765 (and correlates) and smoking that achieves genome-wide significance; these SNPs have previously been associated with mRNA levels of CHRNA5 in brain and lung tissue.
-
Multiple cholinergic nicotinic receptor genes affect nicotine dependence risk in African and European Americans
Genes Brain and Behavior, 2010Co-Authors: Nancy L Saccone, Dorothy Hatsukami, Richard A Grucza, Naomi Breslau, Eric O. Johnson, Tae-hwi Schwantes-an, John P. Rice, Alison Goate, Laura J BierutAbstract:Several independent studies show that the chromosome 15q25.1 region, which contains the CHRNA5–CHRNA3–CHRNB4 gene cluster, harbors variants strongly associated with nicotine dependence, other smoking behaviors, lung cancer and chronic obstructive pulmonary disease. We investigated whether variants in other cholinergic nicotinic receptor subunit (CHRN) genes affect the risk of nicotine dependence in a new sample of African Americans (AAs) (N = 710). We also analyzed this AA sample together with a European American (EA) sample (N = 2062, 1608 of which have been previously studied), allowing for differing effects in the two populations. Cases are current nicotine-dependent smokers and controls are non-dependent smokers. Variants in or near CHRND–CHRNG, CHRNA7 and CHRNA10 show modest association with nicotine dependence risk in the AA sample. In addition, CHRNA4, CHRNB3–CHRNA6 and CHRNB1 show association in at least one population. CHRNG and CHRNA4 harbor single nucleotide polymorphisms (SNPs) that have opposite directions of effect in the two populations. In each of the population samples, these loci substantially increase the trait variation explained, although no loci meet Bonferroni-corrected significance in the AA sample alone. The trait variation explained by three key associated SNPs in CHRNA5–CHRNA3–CHRNB4 is 1.9% in EAs and also 1.9% in AAs; this increases to 4.5% in EAs and 7.3% in AAs when we add six variants representing associations at other CHRN genes. Multiple nicotinic receptor subunit genes outside chromosome 15q25 are likely to be important in the biological processes and development of nicotine dependence, and some of these risks may be shared across diverse populations.
-
the chrna5 chrna3 chrnb4 nicotinic receptor subunit gene cluster affects risk for nicotine dependence in african americans and in european americans
Cancer Research, 2009Co-Authors: Nancy L Saccone, Weimin Duan, Jen C Wang, Scott F Saccone, John P Budde, Richard A Grucza, Naomi Breslau, Eric O. Johnson, Robert CulverhouseAbstract:Genetic association studies have shown the importance of variants in the CHRNA5-CHRNA3-CHRNB4 cholinergic nicotinic receptor subunit gene cluster on chromosome 15q24-25.1 for the risk of nicotine dependence, smoking, and lung cancer in populations of European descent. We have carried out a detailed study of this region using dense genotyping in both European-Americans and African-Americans. We genotyped 75 known single nucleotide polymorphisms (SNPs) and one sequencing-discovered SNP in an African-American sample ( N = 710) and in a European-American sample ( N = 2,062). Cases were nicotine-dependent and controls were nondependent smokers. The nonsynonymous CHRNA5 SNP rs16969968 is the most significant SNP associated with nicotine dependence in the full sample of 2,772 subjects [ P = 4.49 × 10 −8 ; odds ratio (OR), 1.42; 95% confidence interval (CI), 1.25–1.61] as well as in African-Americans only ( P = 0.015; OR, 2.04; 1.15–3.62) and in European-Americans only ( P = 4.14 × 10 −7 ; OR, 1.40; 1.23–1.59). Other SNPs that have been shown to affect the mRNA levels of CHRNA5 in European-Americans are associated with nicotine dependence in African-Americans but not in European-Americans. The CHRNA3 SNP rs578776, which has a low correlation with rs16969968, is associated with nicotine dependence in European-Americans but not in African-Americans. Less common SNPs (frequency ≤ 5%) are also associated with nicotine dependence. In summary, multiple variants in this gene cluster contribute to nicotine dependence risk, and some are also associated with functional effects on CHRNA5 . The nonsynonymous SNP rs16969968, a known risk variant in populations of European-descent, is also significantly associated with risk in African-Americans. Additional SNPs contribute to risk in distinct ways in these two populations. [Cancer Res 2009;69(17):6848–56]
Karen E. Stevens - One of the best experts on this subject based on the ideXlab platform.
-
Reduced CHRNA7 expression in C3H mice is associated with increases in hippocampal parvalbumin and glutamate decarboxylase-67 (GAD67) as well as altered levels of GABAA receptor subunits
Neuroscience, 2014Co-Authors: Ryan Bates, Bradley J. Stith, Karen E. Stevens, Catherine E. AdamsAbstract:Decreased expression of CHRNA7, the gene encoding the α7(∗) subtype of nicotinic receptor, may contribute to the cognitive dysfunction observed in schizophrenia by disrupting the inhibitory/excitatory balance in the hippocampus. C3H mice with reduced CHRNA7 expression have significant reductions in hippocampal α7(∗) receptor density, deficits in hippocampal auditory gating, increased hippocampal activity as well as significant decreases in hippocampal glutamate decarboxylase-65 (GAD65) and γ-aminobutyric acid-A (GABAA) receptor levels. The current study investigated whether altered CHRNA7 expression is associated with changes in the levels of parvalbumin, GAD67 and/or GABAA receptor subunits in the hippocampus from male and female C3H CHRNA7 wildtype, C3H CHRNA7 heterozygous and C3H CHRNA7 knockout (KO) mice using quantitative Western immunoblotting. Reduced CHRNA7 expression was associated with significant increases in hippocampal parvalbumin and GAD67 and with complex alterations in GABAA receptor subunits. A decrease in α3 subunit protein was seen in both female C3H CHRNA7 Het and KO mice while a decrease in α4 subunit protein was also detected in C3H CHRNA7 KO mice with no sex difference. In contrast, an increase in δ subunit protein was observed in C3H CHRNA7 Het mice while a decrease in this subunit was observed in C3H CHRNA7 KO mice, with δ subunit protein levels being greater in males than in females. Finally, an increase in γ2 subunit protein was found in C3H CHRNA7 KO mice with the levels of this subunit again being greater in males than in females. The increases in hippocampal parvalbumin and GAD67 observed in C3H CHRNA7 mice are contrary to reports of reductions in these proteins in the postmortem hippocampus from schizophrenic individuals. We hypothesize that the disparate results may occur because of the influence of factors other than CHRNA7 that have been found to be abnormal in schizophrenia.
-
reduced CHRNA7 expression in mice is associated with decreases in hippocampal markers of inhibitory function implications for neuropsychiatric diseases
Neuroscience, 2012Co-Authors: Catherine E. Adams, Jerry A Stitzel, Karen E. Stevens, Joan C Yonchek, Kalynn M Schulz, Sharon L Graw, Patricia U TeschkeAbstract:The α7* nicotinic acetylcholine receptor encoded by CHRNA7 (human)/CHRNA7 (mice) regulates the release of both the inhibitory neurotransmitter GABA and the excitatory neurotransmitter glutamate in the hippocampal formation. A heterozygous (Het) deletion at 15q13.3 containing CHRNA7 is associated with increased risk for schizophrenia, autism, and epilepsy. Each of these diseases are characterized by abnormalities in excitatory and inhibitory hippocampal circuit function. Reduced CHRNA7 expression results in decreased hippocampal α7* receptor density, abnormal hippocampal auditory sensory processing, and increased hippocampal CA3 pyramidal neuron activity in C3H mice Het for a null mutation in CHRNA7. These abnormalities demonstrate that decreased CHRNA7 expression alters hippocampal inhibitory circuit function. The current study examined the specific impact of reduced CHRNA7 expression on hippocampal inhibitory circuits by measuring the levels of GABA, GABA(A) receptors, the GABA synthetic enzyme l-glutamic acid decarboxylase-65 (GAD-65), and the vesicular GABA transporter 1 (GAT-1) in wild-type (CHRNA7 +/+) and Het (CHRNA7 +/-) C3H α7 mice of both genders. GAD-65 levels were significantly decreased in male and female Het C3H α7 mice, whereas GABA(A) receptors were significantly reduced only in male Het C3H α7 mice. No changes in GABA and GAT-1 levels were detected. These data suggest that reduced CHRNA7 expression may contribute to the abnormalities in hippocampal inhibitory circuits observed in schizophrenia, autism, and/or epilepsy.
Laura J Bierut - One of the best experts on this subject based on the ideXlab platform.
-
variants in the chrna5 chrna3 chrnb4 region of chromosome 15 predict gastrointestinal adverse events in the transdisciplinary tobacco use research center smoking cessation trial
Nicotine & Tobacco Research, 2019Co-Authors: Robert Culverhouse, Lishiun Chen, Nancy L Saccone, Timothy B Baker, Megan E Piper, Laura J BierutAbstract:INTRODUCTION: Reducing adverse events from pharmacologic treatment is an important goal of precision medicine and identifying genetic predictors of adverse events is a step towards this goal. In 2012 King et al. reported associations between genetic variants and adverse events in a placebo-controlled smoking cessation trial of varenicline and bupropion. Strong associations were found between gastrointestinal adverse events and 11 variants in the CHRNA5-CHRNA3-CHRNB4 region of chromosome 15, a region repeatedly associated with smoking-related phenotypes. Our goal was to replicate, in an independent sample, the impact of variants in the CHRNA5-CHRNA3-CHRNB4 region on gastrointestinal adverse events, and to extend the analyses to adherence and smoking cessation. METHODS: The University of Wisconsin Transdisciplinary Tobacco Use Research Center (TTURC) conducted a multi-armed, placebo-controlled smoking cessation trial of bupropion and nicotine replacement therapy (NRT) that included 985 genotyped European-ancestry participants. We evaluated relations between our key variables using logistic regression. RESULTS: Gastrointestinal adverse events were experienced by 31.6% of the TTURC participants. Each of the CHRNA5-CHRNA3-CHRNB4 associations from the King study was found in TTURC, with the same direction of effect. Neither these variants nor the gastrointestinal adverse events themselves were associated with adherence to medication or successful smoking cessation. CONCLUSIONS: Variants in the CHRNA5-CHRNA3-CHRNB4 region of chromosome 15 are associated with gastrointestinal adverse events in smoking cessation. Additional independent variants in this region strengthen the association. The consistency between the results of these two independent studies supports the conclusion that these findings reflect biological response to the use of smoking cessation medication. IMPLICATIONS: The fact that our findings from the TTURC smoking cessation trial, support the independent findings of King et al. suggest that associations of variants in the CHRNA5-CHRNA3-CHRNB4 region of chromosome 15 with gastrointestinal adverse events while taking medications for smoking cessation reflect biology. However, although adherence to medication was a strong predictor of successful smoking cessation in TTURC, neither adverse events nor the genetic variants associated with them predicted either adherence or successful cessation in this study. Thus, although we should strive to minimize adverse events during treatment, we should not expect that to increase successful smoking cessation substantially.
-
Multiple cholinergic nicotinic receptor genes affect nicotine dependence risk in African and European Americans
Genes Brain and Behavior, 2010Co-Authors: Nancy L Saccone, Dorothy Hatsukami, Richard A Grucza, Naomi Breslau, Eric O. Johnson, Tae-hwi Schwantes-an, John P. Rice, Alison Goate, Laura J BierutAbstract:Several independent studies show that the chromosome 15q25.1 region, which contains the CHRNA5–CHRNA3–CHRNB4 gene cluster, harbors variants strongly associated with nicotine dependence, other smoking behaviors, lung cancer and chronic obstructive pulmonary disease. We investigated whether variants in other cholinergic nicotinic receptor subunit (CHRN) genes affect the risk of nicotine dependence in a new sample of African Americans (AAs) (N = 710). We also analyzed this AA sample together with a European American (EA) sample (N = 2062, 1608 of which have been previously studied), allowing for differing effects in the two populations. Cases are current nicotine-dependent smokers and controls are non-dependent smokers. Variants in or near CHRND–CHRNG, CHRNA7 and CHRNA10 show modest association with nicotine dependence risk in the AA sample. In addition, CHRNA4, CHRNB3–CHRNA6 and CHRNB1 show association in at least one population. CHRNG and CHRNA4 harbor single nucleotide polymorphisms (SNPs) that have opposite directions of effect in the two populations. In each of the population samples, these loci substantially increase the trait variation explained, although no loci meet Bonferroni-corrected significance in the AA sample alone. The trait variation explained by three key associated SNPs in CHRNA5–CHRNA3–CHRNB4 is 1.9% in EAs and also 1.9% in AAs; this increases to 4.5% in EAs and 7.3% in AAs when we add six variants representing associations at other CHRN genes. Multiple nicotinic receptor subunit genes outside chromosome 15q25 are likely to be important in the biological processes and development of nicotine dependence, and some of these risks may be shared across diverse populations.
-
Nicotinic Receptor Gene Variants Influence Susceptibility to Heavy Smoking
Cancer Epidemiology Biomarkers & Prevention, 2008Co-Authors: Victoria L. Stevens, Jen C Wang, Anthony L. Hinrichs, Laura J Bierut, Alison Goate, Jeffrey T. Talbot, Juzhong Sun, Michael J. Thun, Eugenia E. CalleAbstract:Heavy smoking is a strong predictor of nicotine dependence, which is a major impediment to smoking cessation. Although both heavy smoking and nicotine dependence are highly heritable, previous attempts to identify genes influencing these phenotypes have been largely unsuccessful until very recently. We studied 1,452 heavy smokers (defined as smoking at least 30 cigarettes per day for at least 5 years) and 1,395 light smokers (defined as smoking 2-fold. Our findings identify two loci in the CHRNA5-CHRNA3-CHRNB4 gene cluster that predict smoking behavior and provide strong evidence for the involvement of the α5 nicotinic receptor in heavy smoking. (Cancer Epidemiol Biomarkers Prev 2008;17(12):3517–25)
Christian P Schaaf - One of the best experts on this subject based on the ideXlab platform.
-
CHRNA7 copy number gains are enriched in adolescents with major depressive and anxiety disorders
Journal of Affective Disorders, 2018Co-Authors: Madelyn A Gillentine, Christian P Schaaf, Ricardo Lozoya, Jiani Yin, Christopher M Grochowski, Janson J White, Chadi A CalargeAbstract:Abstract Objective Neuronal nicotinic acetylcholine receptors (nAChRs), specifically the α7 nAChR encoded by the gene CHRNA7, have been implicated in behavior regulation in animal models. In humans, copy number variants (CNVs) of CHRNA7 are found in a range of neuropsychiatric disorders, including mood and anxiety disorders. Here, we aimed to determine the prevalence of CHRNA7 CNVs among adolescents and young adults with major depressive disorder (MDD) and anxiety disorders. Methods Twelve to 21 year-old participants with MDD and/or anxiety disorders (34% males, mean ± std age: 18.9 ± 1.8 years) were assessed for CHRNA7 copy number state using droplet digital PCR (ddPCR) and genomic quantitative PCR (qPCR). Demographic, anthropometric, and clinical data, including the Beck Anxiety Index (BAI), Beck Depression Inventory (BDI), and the Inventory of Depressive Symptoms (IDS) were collected and compared across individuals with and without a CHRNA7 CNV. Results Of 205 individuals, five (2.4%) were found to carry a CHRNA7 gain, significantly higher than the general population. No CHRNA7 deletions were identified. Clinically, the individuals carrying CHRNA7 duplications did not differ significantly from copy neutral individuals with MDD and/or anxiety disorders. Conclusions CHRNA7 gains are relatively prevalent among young individuals with MDD and anxiety disorders (odds ratio = 4.032) without apparent distinguishing clinical features. Future studies should examine the therapeutic potential of α7 nAChR targeting drugs to ameliorate depressive and anxiety disorders.
-
CHRNA7 deficient mice manifest no consistent neuropsychiatric and behavioral phenotypes
Scientific Reports, 2017Co-Authors: Jiani Yin, Christian P Schaaf, Wu Chen, Hongxing Yang, Mingshan XueAbstract:The alpha7 nicotinic acetylcholine receptor, encoded by the CHRNA7 gene, has been implicated in various psychiatric and behavioral disorders, including schizophrenia, bipolar disorder, epilepsy, autism, Alzheimer’s disease, and Parkinson’s disease, and is considered a potential target for therapeutic intervention. 15q13.3 microdeletion syndrome is a rare genetic disorder, caused by submicroscopic deletions on chromosome 15q. CHRNA7 is the only gene in this locus that has been deleted entirely in cases involving the smallest microdeletions. Affected individuals manifest variable neurological and behavioral phenotypes, which commonly include developmental delay/intellectual disability, epilepsy, and autism spectrum disorder. Subsets of patients have short attention spans, aggressive behaviors, mood disorders, or schizophrenia. Previous behavioral studies suggested that CHRNA7 deficient mice had attention deficits, but were normal in baseline behavioral responses, learning, memory, and sensorimotor gating. Given a growing interest in CHRNA7-related diseases and a better appreciation of its associated human phenotypes, an in-depth behavioral characterization of the CHRNA7 deficient mouse model appeared prudent. This study was designed to investigate whether CHRNA7 deficient mice manifest phenotypes related to those seen in human individuals, using an array of 12 behavioral assessments and electroencephalogram (EEG) recordings on freely-moving mice. Examined phenotypes included social interaction, compulsive behaviors, aggression, hyperactivity, anxiety, depression, and somatosensory gating. Our data suggests that mouse behavior and EEG recordings are not sensitive to decreased CHRNA7 copy number.
-
CHRNA7 triplication associated with cognitive impairment and neuropsychiatric phenotypes in a three-generation pedigree
European Journal of Human Genetics, 2014Co-Authors: Claudia Soler-alfonso, Claudia Mb Carvalho, Erin K Roney, Patricia I Bader, Katarzyna E Kolodziejska, Rachel M Miller, James R Lupski, Pawel Stankiewicz, Sau Wai Cheung, Christian P SchaafAbstract:Although deletions of CHRNA7 have been associated with intellectual disability (ID), seizures and neuropsychiatric phenotypes, the pathogenicity of CHRNA7 duplications has been uncertain. We present the first report of CHRNA7 triplication. Three generations of a family affected with various neuropsychiatric phenotypes, including anxiety, bipolar disorder, developmental delay and ID, were studied with array comparative genomic hybridization (aCGH). High-resolution aCGH revealed a 650-kb triplication at chromosome 15q13.3 encompassing the CHRNA7 gene, which encodes the alpha7 subunit of the neuronal nicotinic acetylcholine receptor. A small duplication precedes the triplication at the proximal breakpoint junction, and analysis of the breakpoint indicates that the triplicated segment is in an inverted orientation with respect to the duplication. CHRNA7 triplication appears to occur by a replication-based mechanism that produces inverted triplications embedded within duplications. Co-segregation of the CHRNA7 triplication with neuropsychiatric and cognitive phenotypes provides further evidence for dosage sensitivity of CHRNA7 .
Robert Culverhouse - One of the best experts on this subject based on the ideXlab platform.
-
variants in the chrna5 chrna3 chrnb4 region of chromosome 15 predict gastrointestinal adverse events in the transdisciplinary tobacco use research center smoking cessation trial
Nicotine & Tobacco Research, 2019Co-Authors: Robert Culverhouse, Lishiun Chen, Nancy L Saccone, Timothy B Baker, Megan E Piper, Laura J BierutAbstract:INTRODUCTION: Reducing adverse events from pharmacologic treatment is an important goal of precision medicine and identifying genetic predictors of adverse events is a step towards this goal. In 2012 King et al. reported associations between genetic variants and adverse events in a placebo-controlled smoking cessation trial of varenicline and bupropion. Strong associations were found between gastrointestinal adverse events and 11 variants in the CHRNA5-CHRNA3-CHRNB4 region of chromosome 15, a region repeatedly associated with smoking-related phenotypes. Our goal was to replicate, in an independent sample, the impact of variants in the CHRNA5-CHRNA3-CHRNB4 region on gastrointestinal adverse events, and to extend the analyses to adherence and smoking cessation. METHODS: The University of Wisconsin Transdisciplinary Tobacco Use Research Center (TTURC) conducted a multi-armed, placebo-controlled smoking cessation trial of bupropion and nicotine replacement therapy (NRT) that included 985 genotyped European-ancestry participants. We evaluated relations between our key variables using logistic regression. RESULTS: Gastrointestinal adverse events were experienced by 31.6% of the TTURC participants. Each of the CHRNA5-CHRNA3-CHRNB4 associations from the King study was found in TTURC, with the same direction of effect. Neither these variants nor the gastrointestinal adverse events themselves were associated with adherence to medication or successful smoking cessation. CONCLUSIONS: Variants in the CHRNA5-CHRNA3-CHRNB4 region of chromosome 15 are associated with gastrointestinal adverse events in smoking cessation. Additional independent variants in this region strengthen the association. The consistency between the results of these two independent studies supports the conclusion that these findings reflect biological response to the use of smoking cessation medication. IMPLICATIONS: The fact that our findings from the TTURC smoking cessation trial, support the independent findings of King et al. suggest that associations of variants in the CHRNA5-CHRNA3-CHRNB4 region of chromosome 15 with gastrointestinal adverse events while taking medications for smoking cessation reflect biology. However, although adherence to medication was a strong predictor of successful smoking cessation in TTURC, neither adverse events nor the genetic variants associated with them predicted either adherence or successful cessation in this study. Thus, although we should strive to minimize adverse events during treatment, we should not expect that to increase successful smoking cessation substantially.
-
multiple independent loci at chromosome 15q25 1 affect smoking quantity a meta analysis and comparison with lung cancer and copd
PLOS Genetics, 2010Co-Authors: Robert Culverhouse, Kaisu Keskitalovuokko, Xiangning Chen, Nancy L Saccone, Dale S. Cannon, Taehwi Schwantesan, Sven Cichon, Ina Giegling, Xiangyang KongAbstract:Recently, genetic association findings for nicotine dependence, smoking behavior, and smoking-related diseases converged to implicate the chromosome 15q25.1 region, which includes the CHRNA5-CHRNA3-CHRNB4 cholinergic nicotinic receptor subunit genes. In particular, association with the nonsynonymous CHRNA5 SNP rs16969968 and correlates has been replicated in several independent studies. Extensive genotyping of this region has suggested additional statistically distinct signals for nicotine dependence, tagged by rs578776 and rs588765. One goal of the Consortium for the Genetic Analysis of Smoking Phenotypes (CGASP) is to elucidate the associations among these markers and dichotomous smoking quantity (heavy versus light smoking), lung cancer, and chronic obstructive pulmonary disease (COPD). We performed a meta-analysis across 34 datasets of European-ancestry subjects, including 38,617 smokers who were assessed for cigarettes-per-day, 7,700 lung cancer cases and 5,914 lung-cancer-free controls (all smokers), and 2,614 COPD cases and 3,568 COPD-free controls (all smokers). We demonstrate statistically independent associations of rs16969968 and rs588765 with smoking (mutually adjusted p-values < 10(-35) and < 10(-8) respectively). Because the risk alleles at these loci are negatively correlated, their association with smoking is stronger in the joint model than when each SNP is analyzed alone. Rs578776 also demonstrates association with smoking after adjustment for rs16969968 (p < 10(-6)). In models adjusting for cigarettes-per-day, we confirm the association between rs16969968 and lung cancer (p < 10(-20)) and observe a nominally significant association with COPD (p = 0.01); the other loci are not significantly associated with either lung cancer or COPD after adjusting for rs16969968. This study provides strong evidence that multiple statistically distinct loci in this region affect smoking behavior. This study is also the first report of association between rs588765 (and correlates) and smoking that achieves genome-wide significance; these SNPs have previously been associated with mRNA levels of CHRNA5 in brain and lung tissue.
-
the chrna5 chrna3 chrnb4 nicotinic receptor subunit gene cluster affects risk for nicotine dependence in african americans and in european americans
Cancer Research, 2009Co-Authors: Nancy L Saccone, Weimin Duan, Jen C Wang, Scott F Saccone, John P Budde, Richard A Grucza, Naomi Breslau, Eric O. Johnson, Robert CulverhouseAbstract:Genetic association studies have shown the importance of variants in the CHRNA5-CHRNA3-CHRNB4 cholinergic nicotinic receptor subunit gene cluster on chromosome 15q24-25.1 for the risk of nicotine dependence, smoking, and lung cancer in populations of European descent. We have carried out a detailed study of this region using dense genotyping in both European-Americans and African-Americans. We genotyped 75 known single nucleotide polymorphisms (SNPs) and one sequencing-discovered SNP in an African-American sample ( N = 710) and in a European-American sample ( N = 2,062). Cases were nicotine-dependent and controls were nondependent smokers. The nonsynonymous CHRNA5 SNP rs16969968 is the most significant SNP associated with nicotine dependence in the full sample of 2,772 subjects [ P = 4.49 × 10 −8 ; odds ratio (OR), 1.42; 95% confidence interval (CI), 1.25–1.61] as well as in African-Americans only ( P = 0.015; OR, 2.04; 1.15–3.62) and in European-Americans only ( P = 4.14 × 10 −7 ; OR, 1.40; 1.23–1.59). Other SNPs that have been shown to affect the mRNA levels of CHRNA5 in European-Americans are associated with nicotine dependence in African-Americans but not in European-Americans. The CHRNA3 SNP rs578776, which has a low correlation with rs16969968, is associated with nicotine dependence in European-Americans but not in African-Americans. Less common SNPs (frequency ≤ 5%) are also associated with nicotine dependence. In summary, multiple variants in this gene cluster contribute to nicotine dependence risk, and some are also associated with functional effects on CHRNA5 . The nonsynonymous SNP rs16969968, a known risk variant in populations of European-descent, is also significantly associated with risk in African-Americans. Additional SNPs contribute to risk in distinct ways in these two populations. [Cancer Res 2009;69(17):6848–56]