The Experts below are selected from a list of 141 Experts worldwide ranked by ideXlab platform
Paul Kellam - One of the best experts on this subject based on the ideXlab platform.
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host genetics of epstein barr virus infection latency and disease
Reviews in Medical Virology, 2015Co-Authors: Charlotte J Houldcroft, Paul KellamAbstract:Epstein–Barr virus (EBV) infects 95% of the adult population and is the cause of infectious mononucleosis. It is also associated with 1% of cancers worldwide, such as nasopharyngeal carcinoma, Hodgkin's lymphoma and Burkitt's lymphoma. Human and cancer genetic studies are now major forces determining gene variants associated with many cancers, including nasopharyngeal carcinoma and Hodgkin's lymphoma. Host genetics is also important in infectious disease; however, there have been no large-scale efforts towards understanding the contribution that human genetic variation plays in primary EBV infection and latency. This review covers 25 years of studies into host genetic susceptibility to EBV infection and disease, from candidate gene studies, to the first genome-wide association study of EBV antibody response, and an EBV-status stratified genome-wide association study of Hodgkin's lymphoma. Although many genes are implicated in EBV-related disease, studies are often small, not replicated or followed up in a different disease. Larger, appropriately powered genomic studies to understand the host response to EBV will be needed to move our understanding of the biology of EBV infection beyond the handful of genes currently identified. Fifty years since the discovery of EBV and its identification as a human oncogenic virus, a glimpse of the future is shown by the first whole-genome and whole-exome studies, revealing new human genes at the heart of the host–EBV interaction. © 2014 The Authors. Reviews in Medical Virology published by John Wiley & Sons Ltd.
Charlotte J Houldcroft - One of the best experts on this subject based on the ideXlab platform.
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host genetics of epstein barr virus infection latency and disease
Reviews in Medical Virology, 2015Co-Authors: Charlotte J Houldcroft, Paul KellamAbstract:Epstein–Barr virus (EBV) infects 95% of the adult population and is the cause of infectious mononucleosis. It is also associated with 1% of cancers worldwide, such as nasopharyngeal carcinoma, Hodgkin's lymphoma and Burkitt's lymphoma. Human and cancer genetic studies are now major forces determining gene variants associated with many cancers, including nasopharyngeal carcinoma and Hodgkin's lymphoma. Host genetics is also important in infectious disease; however, there have been no large-scale efforts towards understanding the contribution that human genetic variation plays in primary EBV infection and latency. This review covers 25 years of studies into host genetic susceptibility to EBV infection and disease, from candidate gene studies, to the first genome-wide association study of EBV antibody response, and an EBV-status stratified genome-wide association study of Hodgkin's lymphoma. Although many genes are implicated in EBV-related disease, studies are often small, not replicated or followed up in a different disease. Larger, appropriately powered genomic studies to understand the host response to EBV will be needed to move our understanding of the biology of EBV infection beyond the handful of genes currently identified. Fifty years since the discovery of EBV and its identification as a human oncogenic virus, a glimpse of the future is shown by the first whole-genome and whole-exome studies, revealing new human genes at the heart of the host–EBV interaction. © 2014 The Authors. Reviews in Medical Virology published by John Wiley & Sons Ltd.
Jaap M Middeldorp - One of the best experts on this subject based on the ideXlab platform.
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bamhi a rightward frame 1 an epstein barr virus encoded oncogene and immune modulator
Reviews in Medical Virology, 2013Co-Authors: Eveline K Hoebe, Tessa Le Y S Large, Astrid E Greijer, Jaap M MiddeldorpAbstract:Epstein–Barr virus (EBV) causes several benign and malignant disorders of lymphoid and epithelial origin. EBV-related tumors display distinct patterns of viral latent gene expression, of which the BamHI-A rightward frame 1 (BARF1) is selectively expressed in carcinomas, regulated by cellular differentiation factors including ΔNp63α. BARF1 functions as a viral oncogene, immortalizing and transforming epithelial cells of different origin by acting as a mitogenic growth factor, inducing cyclin-D expression, and up-regulating antiapoptotic Bcl-2, stimulating host cell growth and survival. In addition, secreted hexameric BARF1 has immune evasive properties, functionally corrupting macrophage colony stimulating factor, as supported by recent functional and structural data. Therefore, BARF1, an intracellular and secreted protein, not only has multiple pathogenic functions but also can function as a target for immune responses. Deciphering the role of BARF1 in EBV biology will contribute to novel diagnostic and treatment options for EBV-driven carcinomas. Herein, we discuss recent insights on the regulation of BARF1 expression and aspects of structure-function relating to its oncogenic and immune suppressive properties. © 2013 The Authors. Reviews in Medical Virology published by John Wiley & Sons, Ltd.
Deyin Guo - One of the best experts on this subject based on the ideXlab platform.
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corrigendum to emerging coronaviruses genome structure replication and pathogenesis journal of Medical Virology 2020 92 4 418 423 10 1002 jmv 25681
Journal of Medical Virology, 2020Co-Authors: Yu Chen, Qianyun Liu, Deyin GuoAbstract:The articlesup1/sup to which this Corrigendum refers was published in Journal of Medical Virology 92(4): 418 to 423 (https://onlinelibrary wiley com/doi/full/10 1002/JMV 25681) The symptom of MHV-A59 should be "Central nervous system disease and hepatitis," rather than "Mouse Acute pneumonia and severe lung injuries " The authors wish to apologize for the error Copyright © 2020 Wiley Periodicals LLC
Hung Te Liu - One of the best experts on this subject based on the ideXlab platform.
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corrigendum to the potential chemical structure of anti sars cov 2 rna dependent rna polymerase journal of Medical Virology 2020 92 6 693 697 10 1002 jmv 25761
Journal of Medical Virology, 2020Co-Authors: Jrhau Lung, Yushih Lin, Yaohsu Yang, Yu Lun Chou, Li Hsin Shu, Yuching Cheng, Hung Te LiuAbstract:The potential chemical structure of anti-SARS-CoV-2 RNA-dependent RNA polymerase. The article to which this Corrigendum refers was published in Journal of Medical Virology 92(6): 693 to 697 (https://onlinelibrary.wiley.com/doi/full/10.1002/jmv.25761). The corrigendum corrects protease to polymerase in the “For coronaviruses, RNA-dependent. RNA polymerase (RdRp) is an important protease that catalyzes the replication of RNA from RNA template and is an attractive therapeutic target.” of abstract section. The authors apologize for the error. 1.