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Tae Jin Kim - One of the best experts on this subject based on the ideXlab platform.
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CD99 costimulation up-regulates T cell receptor-mediated activation of JNK and AP-1.
Molecules and cells, 2004Co-Authors: Sang-soon Yoon, Hyun Kim, Doo Hyun Chung, Tae Jin KimAbstract:Although CD28 is the principal T cell costimulatory molecule for the T cell receptor, a number of other cell surface proteins have costimulatory functions and perform specific roles in different contexts. Here we analyzed the mechanism of CD99 costimulation of the T cell receptor. Cooperation of CD99 engagement with suboptimal TCR/CD3 signals resulted in greatly enhanced CD4+ T cell proliferation. CD99 costimulation also led to elevated expression of CD25 and GM1 on the CD4+ T cell surface within 3 days. In Jurkat TAg cells, CD99 costimulation led to increased apoptosis compared to stimulation with CD3 or CD99 alone. CD99 costimulation also augmented activation of MAP kinases, especially of JNK, and increased AP-1 activation was also observed using a luciferase reporter assay. These results show that CD99 has a costimulatory function for T cells and acts by a mechanism distinct from CD28.
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Identification of cyclophilin A as a CD99-binding protein by yeast two-hybrid screening
Immunology letters, 2004Co-Authors: Hyun-jung Kim, Kyung Hee Chong, Shin Wook Kang, Jae-rin Lee, Ji-yeon Kim, Myong-joon Hahn, Tae Jin KimAbstract:CD99 is a 32kDa surface glycoprotein, which is involved in the migration of leukocytes and the transport of ganglioside GM1 and transmembrane proteins. To identify signaling mechanisms triggered by CD99 engagement, a LexA-based yeast two-hybrid system was utilized to identify proteins interacting with the cytoplasmic domains of CD99. In seven positive clones, we attempted to ascertain whether cyclophilin A (CypA) was involved in CD99-mediated signaling, since CypA had been implicated as a signaling regulator for kinases and phosphatases. The interaction between CD99 and CypA was confirmed by co-immunoprecipitation and confocal immunofluorescence studies. Interestingly, the amounts of CypA associated with CD99 increased upon CD99 engagement. We prepared an expression plasmid by inserting CypA cDNA into pEGFP, in order to visualize cellular CypA. In HeLa or HEK 293T cells transfected with the pEGFP-CypA plasmid, GFP-tagged CypA was diffusely present in the cytoplasm of untreated cells. However, CypA-GFP moved to the cell periphery and membrane blebbing, and became colocalized with CD99 upon CD99 engagement. These results suggest that CypA may be either a signaling mediator or a signaling regulator for CD99.
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Engagement of CD99 triggers the exocytic transport of ganglioside GM1 and the reorganization of actin cytoskeleton.
FEBS Letters, 2003Co-Authors: Sang-soon Yoon, Kyung In Jung, Seong Hoe Park, Eun-young Choi, Imsoon Lee, Yoon La Choi, Tae Jin KimAbstract:We studied the role of lipid rafts and actin cytoskeleton in CD99-mediated signaling to elucidate the mechanism of protein transport upon CD99 engagement. CD99 engagement in Jurkat cells elicited the exocytic transport of GM1 as well as several surface molecules closely related with CD99 functions. In addition, CD99 molecules were rapidly incorporated into lipid rafts and appeared to rearrange the actin cytoskeleton upon CD99 stimulation. Association of CD99 with actin cytoskeleton was inhibited by methyl-β-cyclodextrin, while CD99-mediated GM1 clustering was inhibited by cytochalasin D. Therefore, we suggest that CD99 may play a role in the vesicular transport of transmembrane proteins and lipid rafts from the intracellular location to the cell surface, possibly by effecting actin cytoskeleton reorganization.
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Characterization and epitope mapping of two monoclonal antibodies against human CD99.
Experimental & molecular medicine, 2002Co-Authors: Min Chan Gil, Seong Hoe Park, Kyeong Cheon Jung, Yoon-la Choi, Mi-hong Lee, Jeong-in Seo, Minkyung Kim, Tae Jin KimAbstract:CD99 plays an critical role in the diapedesis of monocytes, T cell differentiation, and the transport of MHC molecules. Engagement of CD99 by agonistic monoclonal antibodies has been reported to trigger multifactorial events including T cell activation as well as cell-cell adhesion during hematopoietic cell differentiation. In this study, to identify the functional domains participating in the cellular events, we mapped the epitopes of CD99, which are recognized by two agonistic CD99 monoclonal antibodies, DN16 and YG32. Using recombinant fusion proteins of GST with whole or parts of CD99, we found that both antibodies interact with CD99 molecules independently of sugar moieties. DN16 mAb detected a linear epitope located in the amino terminal region of CD99 while YG32 mAb bound another linear epitope in the center of the extracellular domain. To confirm that the identified epitopes of CD99 are actually recognized by the two mAbs, we showed the presence of physical interaction between the mAbs and the fusion proteins or synthetic peptides containing the corresponding epitopes using surface plasmon resonance analyses. The dissociation constants of DN16 and YG32 mAbs for the antigen were calculated as 1.27 X 10(-7) and 7.08 X 10(-9) M, respectively. These studies will help understand the functional domains and the subsequent signaling mechanism of CD99.
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High CD99 expression in memory T and B cells in reactive lymph nodes.
Journal of Korean medical science, 1999Co-Authors: Cheol Keun Park, Seong Hoe Park, Young Kee Shin, Tae Jin Kim, Geunghwan AhnAbstract:We investigated the expression of CD99 in 35 hyperplastic perigastric lymph nodes, which were resected for gastric carcinoma or chronic peptic ulcer. Essentially, all lymphocytes in lymph nodes expressed CD99, but there were two populations with respect to the intensity of CD99 expression--CD99high and CD99low cells. We showed CD99high cells were distributed in paracortical and medullary cords by immunohistochemical study while germinal center cells were CD99low. Using three-color flow cytometric analysis with CD3, CD4, CD8, CD19, CD23, CD45RA, CD45RO, CD69, CD138, IgM, IgD, and IgG, most of CD99high cells were shown to be activated/memory T cells. CD4+CD45RO+ T cells were the subset revealing the highest intensity of CD99 expression while CD4+CD45RA+ T cells were CD99low. Among B cells, IgG+ B cells revealed a higher level of CD99 molecules than IgM+ B cells. These results suggest that CD99 is one of activation-related molecules which are upregulated in recently activated lymphocytes.
Seong Hoe Park - One of the best experts on this subject based on the ideXlab platform.
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CD99-dependent expansion of myeloid-derived suppressor cells and attenuation of graft-versus-host disease
Molecules and cells, 2012Co-Authors: Hyojin Park, Masatake Araki, Kimi Araki, Dahye Byun, An Hi Lee, Ju Hyun Kim, Young Larn Ban, Ken Ichi Yamamura, Inho Kim, Seong Hoe ParkAbstract:CD99 is involved in many cellular events, such as the generation of Hodgkin and Reed-Sternberg cells, T cell costimulation, and leukocyte transendothelial migration. However, these studies have been limited to in vitro or in vivo experiments using CD99-deficient cell lines or anti-CD99 antibodies. In the present study, using CD99-deficient mice established by the exchangeable gene trap method, we investigated the physiologic function of murine CD99. In a B6 splenocytes → bm12 graft-versus-host disease model, wild-type cells were minimally lethal, whereas all mice that received CD99-deficient donor cells developed an early and more severe pathology. Graftversus-host disease in these mice was associated with insufficient expansion of myeloid-derived suppressor cells. This was confirmed by experiments illustrating that the injection of wild-type donor cells depleted of Mac-1+ cells led to an almost identical disease course as the CD99-deficient donor system. Therefore, these results suggest that CD99 plays a crucial role in the attenuation of graft-versus-host disease by regulating the expansion of myeloid-derived suppressor cells.
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rapid divergency of rodent CD99 orthologs implications for the evolution of the pseudoautosomal region
Gene, 2005Co-Authors: Seong Hoe Park, Huengsik Choi, Hyojin Park, Won Seo Park, Young Kee Shin, Kyeong Cheon JungAbstract:The human pseudoautosomal region 1 (PAR1) is essential for the obligatory X–Y crossover in male meiosis. Despite its critical role, comparative studies of human and mouse pseudoautosomal genes have been limited owing to the scarcity of genes conserved between the two species. Human CD99 is a 32-kDa cell surface protein that is encoded by the MIC2 gene localized to the PAR1. Although several sequences such as CD99L2 , PBDX , and CD99L1 are related to CD99 , its murine ortholog, CD99 , has not yet been identified. Here we report a novel mouse CD99 , designated D4, which shows overall sequence homology to CD99 , with the highest conservation between the two genes being found in the transmembrane regions. In addition, the D4 protein displays biochemical characteristics, functional homology, and expression patterns similar to those of CD99. The D4 gene is localized on an autosome, chromosome 4, reflecting a common mapping feature with other mouse orthologs of human PAR1 genes. Furthermore, a phylogenetic analysis of CD99-related genes confirmed that the D4 gene is indeed an ortholog of CD99 and exhibits the accelerated evolution pattern of CD99 orthologs, as compared to the CD99L2 orthologs. On the basis of these findings, we suggest that CD99 belongs to the ancient PAR genes, and that the rapid interspecies divergence of its present sequence and map position is due to a high recombination frequency and the occurrence of chromosomal translocation, supporting the addition–attrition hypothesis for PAR evolution.
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CD99 type II is a determining factor for the differentiation of primitive neuroectodermal cells.
Experimental & molecular medicine, 2003Co-Authors: Eunjung Lee, Eun-young Choi, Hyun Gyu Lee, Sung-hye Park, Seong Hoe ParkAbstract:CD99 is a 32-kDa cell surface molecule present on thymocytes, peripheral T cells, many other hematopoietic stem cells and somatic cells were implicated in cell-cell adhesion and cell-activation phenomena. Two major subtypes have been identified so far, designated CD99 type I and type II. We have investigated the correlation between the degree of neural differentiation and the expression of CD99 subtypes in three differentially differentiated cell lines such as CADO-ES1, RD-ES, and SH-N-SY5Y, in order of differentiation. In addition, we induced differentiation of the RD-ES cell line by N(6),2'-dibutyryl-cAMP (db-cAMP). Six days after treatment with db-cAMP, RD-ES cell line has changed its morphology from uniform round cells to cells with neurites, and initially CD99 type II-overexpressed RD-ES cells showed significant down-regulation of CD99 type II, whereas CD99 type I expression remained constant. When RD- ES cells were transfected with the cDNA encoding for CD99 type I-green fluorescence protein (GFP) and type II-GFP, CD99 type II transfected RD-ES cell line remained unchanged with morphology of undifferentiated form. Our data suggest that CD99 type II acts as a negative regulator in the neural differentiation of precursor cells that might occur during nerve system development.
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Engagement of CD99 triggers the exocytic transport of ganglioside GM1 and the reorganization of actin cytoskeleton.
FEBS letters, 2003Co-Authors: Sang-soon Yoon, Kyung In Jung, Yoon-la Choi, Eun-young Choi, Seong Hoe ParkAbstract:We studied the role of lipid rafts and actin cytoskeleton in CD99-mediated signaling to elucidate the mechanism of protein transport upon CD99 engagement. CD99 engagement in Jurkat cells elicited the exocytic transport of GM1 as well as several surface molecules closely related with CD99 functions. In addition, CD99 molecules were rapidly incorporated into lipid rafts and appeared to rearrange the actin cytoskeleton upon CD99 stimulation. Association of CD99 with actin cytoskeleton was inhibited by methyl-beta-cyclodextrin, while CD99-mediated GM1 clustering was inhibited by cytochalasin D. Therefore, we suggest that CD99 may play a role in the vesicular transport of transmembrane proteins and lipid rafts from the intracellular location to the cell surface, possibly by effecting actin cytoskeleton reorganization.
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Engagement of CD99 triggers the exocytic transport of ganglioside GM1 and the reorganization of actin cytoskeleton.
FEBS Letters, 2003Co-Authors: Sang-soon Yoon, Kyung In Jung, Seong Hoe Park, Eun-young Choi, Imsoon Lee, Yoon La Choi, Tae Jin KimAbstract:We studied the role of lipid rafts and actin cytoskeleton in CD99-mediated signaling to elucidate the mechanism of protein transport upon CD99 engagement. CD99 engagement in Jurkat cells elicited the exocytic transport of GM1 as well as several surface molecules closely related with CD99 functions. In addition, CD99 molecules were rapidly incorporated into lipid rafts and appeared to rearrange the actin cytoskeleton upon CD99 stimulation. Association of CD99 with actin cytoskeleton was inhibited by methyl-β-cyclodextrin, while CD99-mediated GM1 clustering was inhibited by cytochalasin D. Therefore, we suggest that CD99 may play a role in the vesicular transport of transmembrane proteins and lipid rafts from the intracellular location to the cell surface, possibly by effecting actin cytoskeleton reorganization.
Watchara Kasinrerk - One of the best experts on this subject based on the ideXlab platform.
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The presence of membrane bound CD99 ligands on leukocyte surface
BMC Research Notes, 2020Co-Authors: Nuchjira Takheaw, Witida Laopajon, Supansa Pata, Sittiruk Roytrakul, Watchara KasinrerkAbstract:Objective CD99, a leukocyte surface molecule, reportedly plays an important role in several cellular processes. However, the role of CD99 in T cell regulation remains unclear, as the CD99 ligand associated with T-cell regulation has not yet been identified. Our previous study showed that recombinant CD99 bound to CD99 ligands was expressed on monocytes, NK cells and dendritic cells. This interaction regulates the expression of IL-6 and TNF-α in CD3 + T cells following T cell activation. In the present study, we confirmed the presence of CD99 ligands in immune cells. Results A recombinant CD99-human IgG fusion protein, CD99HIgG, was produced and used to search for CD99 ligand expression in various hematopoietic cell lines. Among several cell lines, THP-1 monocytic cell line showed strong positive reaction for CD99HIgG, and CD99 and CD99 ligand complexes were pulled-down using a DTSSP cross-linker. The study demonstrated the presence of the membrane bound CD99 ligand, and CD99 ligand candidates were identified via LC–MS/MS. These results may be useful to further identify the CD99 ligands, and to fully comprehend the role of CD99 in immunoregulation.
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Interaction of CD99 and its ligand upregulates IL-6 and TNF-α upon T cell activation
2019Co-Authors: Nuchjira Takheaw, Papawadee Earwong, Witida Laopajon, Supansa Pata, Watchara KasinrerkAbstract:CD99 has been reported to be involved in T cell regulation. CD99 ligand involvement in the regulation of T cell activation has been postulated. In this study, recombinant CD99 proteins were produced and used as a tool for determining the role of CD99 and its ligand interaction. Recombinant CD99 proteins induced the upregulation of IL-6 and TNF-α expression, but not IFN-γ, in anti-CD3 monoclonal antibody activated T cells. The cytokine alteration was not observed in unstimulated T cells indicating the cytokine upregulation required the signal from T cell activation. The upregulation of IL-6 and TNF-α was, in addition, observed in CD3- mononuclear cell population including monocytes and NK cells. The recombinant CD99 proteins, however, did not affect either CD25, CD69 or MHC class II expression or T cell proliferation, upon T cell activation. The CD99 ligands were demonstrated to be expressed on monocytes, NK cells and dendritic cells, but not on B and T cells. Our results indicated the presence of CD99 ligands on leukocyte surface. Interaction between CD99 and its ligands involves the regulation of cytokine production.
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Triggering of CD99 on monocytes by a specific monoclonal antibody regulates T cell activation.
Cellular immunology, 2018Co-Authors: Witida Laopajon, Nuchjira Takheaw, Supansa Pata, Sirirat Surinkaew, Saichit Khummuang, Watchara KasinrerkAbstract:Abstract CD99, a leukocyte surface glycoprotein, has been implicated in many cellular processes including cell adhesion, cell migration and T cell activation. Our previous study demonstrated the anti-CD99 monoclonal antibody (mAb) clone MT99/3 inhibited T cell activation; however, the mechanism is unclear. In this study, we demonstrated that CD99 expressed on monocytes played a role in the inhibition of T cell activation. Anti-CD99 mAb MT99/3 downregulated the expression of costimulatory molecule CD86, but upregulated IL-6, IL-10 and TNF-α production by monocytes. The inhibitory effect of mAb MT99/3 required cell to cell contact between monocytes and lymphocytes. The soluble mediators produced by monocytes alone were insufficient to induce hypo-function of T lymphocytes. In summary, we demonstrated that ligation of CD99 on monocytes by anti-CD99 mAb MT99/3 could mediate T cell hypo-responsiveness. These findings provide the first evidence of the role of CD99 on monocytes that contributes to T cell activation.
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Exploitation of human CD99 expressing mouse myeloma cells as immunogen for production of mouse specific polyclonal antibodies.
Protein expression and purification, 2017Co-Authors: Nuchjira Takheaw, Watchara Kasinrerk, Witida Laopajon, Kantinan Chuensirikulchai, Supansa PataAbstract:In this study, we describe the application of a molecular biology technique for the production of mouse polyclonal antibodies (pAbs) specific to human cell surface molecules. Production of the pAb specific to the human CD99 surface molecule was used as the study model. The retroviral expression system was employed to generate human CD99 expressing mouse myeloma cells. After cell sorting and single cell cloning, a myeloma clone which stably expressed high levels of human CD99 on its surface was established. The human CD99 expressing mouse myeloma cells were then used as the immunogen for immunization of BALB/c mice. As endogenous proteins of mouse myeloma cells possess self-non-immunogenicity for BALB/c mice, after immunization, only the expressed human CD99 molecules induce antibody response. After three immunizations, high titers of mouse anti-CD99 pAbs were successfully produced. The produced pAb specifically reacted to both recombinant human CD99 and native CD99 molecules expressed on human blood cells. The established technology is simple and valuable for the production of pAbs specific to human CD99 membrane proteins which can be used for characterization of the CD99 molecule.
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Construction and characterization of phage-displayed leukocyte surface molecule CD99.
Applied Microbiology and Biotechnology, 2002Co-Authors: Chatchai Tayapiwatana, Watchara KasinrerkAbstract:The phage display technique has been described for the production of various recombinant molecules. In the present report, we used this technique to display a leukocyte surface molecule, CD99. PCR subcloning of CD99 cDNA from the mammalian expression vector pCDM8 to the phagemid expression vector pComb3HSS was performed. The resulting phagemid, pComb3H-CD99, was transformed into Escherichia coli XL-1 Blue. CD99 was displayed on the phage particles following infection of the transformed E. coli with the filamentous phage VCSM13. Using sandwich ELISA, the filamentous phage-displayed CD99 was captured by a CD99 monoclonal antibody (mAb) then detected with anti-M13 conjugated to horseradish peroxidase, confirming that the CD99 molecule was displayed on the phage particles. The CD99-phages inhibited induction of Jurkat cell aggregation by CD99 mAb MT99/1. Proper folding of the displayed CD99 bioactive domain was inferred from this finding. Our results demonstrate that the phage display technique can be applied to the generation of full-length CD99 molecules. The phage carrying this cell surface protein will be useful for identification of its counter receptor or ligand.
Eun-young Choi - One of the best experts on this subject based on the ideXlab platform.
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interaction of CD99 with its paralog CD99l2 positively regulates CD99l2 trafficking to cell surfaces
Journal of Immunology, 2013Co-Authors: Giri Nam, Young Kwan Lee, Hye Yeong Lee, Min Jung, Masatake Araki, Kimi Araki, Seungbok Lee, Imsoon Lee, Eun-young ChoiAbstract:Mouse CD99 and its paralog CD99-like 2 (CD99L2) are surface proteins implicated in cellular adhesion and migration. Although their distributions overlap in a wide variety of cells, their physical/functional relationship is currently unknown. In this study, we show the interaction between the two molecules and its consequence for membrane trafficking of mouse (m)CD99L2. The interaction was analyzed by bimolecular fluorescence complementation, immunoprecipitation, and fluorescence resonance energy transfer assays. When coexpressed, mCD99 formed heterodimers with mCD99L2, as well as homodimers, and the heterodimers were localized more efficiently at the plasma membrane than were the homodimers. Their interaction was cytoplasmic domain–dependent and enhanced mCD99L2 trafficking to the plasma membrane regardless of whether it was transiently overexpressed or endogenously expressed. Surface levels of endogenous mCD99L2 were markedly low on thymocytes, splenic leukocytes, and CTL lines derived from CD99-deficient mice. Importantly, the surface levels of mCD99L2 on mCD99-deficient cells recovered significantly when wild-type mCD99 was exogenously introduced, but they remained low when a cytoplasmic domain mutant of mCD99 was introduced. Our results demonstrate a novel role for mCD99 in membrane trafficking of mCD99L2, providing useful insights into controlling transendothelial migration of leukocytes.
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Detection of homodimer formation of CD99 through extracelluar domain using bimolecular fluorescence complementation analysis.
Experimental & molecular medicine, 2007Co-Authors: Gowoon Choi, Sang Wook Lee, Kyoung Cheon Jung, Eun-young ChoiAbstract:Although various functions of CD99 have been reported, such as apoptosis and homotypic aggregation of thymocyte and transendothelial migration of immune cells, biochemical/molecular natures of CD99 are still elusive. Using mouse CD99 gene, we show that CD99 forms homodimer through its extracellular domain. Expression of mouse CD99 is up-regulated on T cells after CD3-mediated activation, like the case for human CD99. The potential of CD99 to form homodimer was tested with a recently developed bimoleular fluorescence complementation analysis (BiFC). In BiFC analysis, the dimerization-induced fluorescence was strong near the perinuclear region and was faded at the cell membrane. However, surface expression of CD99 was still detected by flow cytometry, suggesting that CD99 either in monomer form or in association with other molecules exists on the cell surface. In BiFC analysis using CD99 mutants with its extracellular, transmembrane, or cytosolic domains changed to corresponding human CD4 domains, the mutant replaced with human CD4-extracellular domain did not produce fluorescence. Purified soluble CD99-Fc fusion proteins bound to CD99-Fc immobilized onto the gold sensor chip in surface plasmon resonance analysis, confirming that the extracellular domain was responsible for dimer formation. Intracytoplasmic staining for CD99 expression in the thymocytes and mature T cells showed that most of the cells, even the cells with low surface level of CD99, contained the molecule inside the cell. Our results suggest that majority of CD99 homodimers may exit in the cell and be exported to the cell surface, dissociating from each other, after a certain regulatory signal is delivered.
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CD99 type II is a determining factor for the differentiation of primitive neuroectodermal cells.
Experimental & molecular medicine, 2003Co-Authors: Eunjung Lee, Eun-young Choi, Hyun Gyu Lee, Sung-hye Park, Seong Hoe ParkAbstract:CD99 is a 32-kDa cell surface molecule present on thymocytes, peripheral T cells, many other hematopoietic stem cells and somatic cells were implicated in cell-cell adhesion and cell-activation phenomena. Two major subtypes have been identified so far, designated CD99 type I and type II. We have investigated the correlation between the degree of neural differentiation and the expression of CD99 subtypes in three differentially differentiated cell lines such as CADO-ES1, RD-ES, and SH-N-SY5Y, in order of differentiation. In addition, we induced differentiation of the RD-ES cell line by N(6),2'-dibutyryl-cAMP (db-cAMP). Six days after treatment with db-cAMP, RD-ES cell line has changed its morphology from uniform round cells to cells with neurites, and initially CD99 type II-overexpressed RD-ES cells showed significant down-regulation of CD99 type II, whereas CD99 type I expression remained constant. When RD- ES cells were transfected with the cDNA encoding for CD99 type I-green fluorescence protein (GFP) and type II-GFP, CD99 type II transfected RD-ES cell line remained unchanged with morphology of undifferentiated form. Our data suggest that CD99 type II acts as a negative regulator in the neural differentiation of precursor cells that might occur during nerve system development.
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Engagement of CD99 triggers the exocytic transport of ganglioside GM1 and the reorganization of actin cytoskeleton.
FEBS letters, 2003Co-Authors: Sang-soon Yoon, Kyung In Jung, Yoon-la Choi, Eun-young Choi, Seong Hoe ParkAbstract:We studied the role of lipid rafts and actin cytoskeleton in CD99-mediated signaling to elucidate the mechanism of protein transport upon CD99 engagement. CD99 engagement in Jurkat cells elicited the exocytic transport of GM1 as well as several surface molecules closely related with CD99 functions. In addition, CD99 molecules were rapidly incorporated into lipid rafts and appeared to rearrange the actin cytoskeleton upon CD99 stimulation. Association of CD99 with actin cytoskeleton was inhibited by methyl-beta-cyclodextrin, while CD99-mediated GM1 clustering was inhibited by cytochalasin D. Therefore, we suggest that CD99 may play a role in the vesicular transport of transmembrane proteins and lipid rafts from the intracellular location to the cell surface, possibly by effecting actin cytoskeleton reorganization.
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Engagement of CD99 triggers the exocytic transport of ganglioside GM1 and the reorganization of actin cytoskeleton.
FEBS Letters, 2003Co-Authors: Sang-soon Yoon, Kyung In Jung, Seong Hoe Park, Eun-young Choi, Imsoon Lee, Yoon La Choi, Tae Jin KimAbstract:We studied the role of lipid rafts and actin cytoskeleton in CD99-mediated signaling to elucidate the mechanism of protein transport upon CD99 engagement. CD99 engagement in Jurkat cells elicited the exocytic transport of GM1 as well as several surface molecules closely related with CD99 functions. In addition, CD99 molecules were rapidly incorporated into lipid rafts and appeared to rearrange the actin cytoskeleton upon CD99 stimulation. Association of CD99 with actin cytoskeleton was inhibited by methyl-β-cyclodextrin, while CD99-mediated GM1 clustering was inhibited by cytochalasin D. Therefore, we suggest that CD99 may play a role in the vesicular transport of transmembrane proteins and lipid rafts from the intracellular location to the cell surface, possibly by effecting actin cytoskeleton reorganization.
Mikhail Roshal - One of the best experts on this subject based on the ideXlab platform.
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tumor suppressor CD99 is downregulated in plasma cell neoplasms lacking ccnd1 translocation and distinguishes neoplastic from normal plasma cells and b cell lymphomas with plasmacytic differentiation from primary plasma cell neoplasms
Modern Pathology, 2018Co-Authors: Qi Gao, Venkata Yellapantula, Maly Fenelus, Janine D Pichardo, Lu Wang, Ola Landgren, Ahmet Dogan, Mikhail RoshalAbstract:CD99(MIC2) is a widely expressed cell surface glycoprotein and functions as a tumor suppressor involved in downregulation of SRC family of tyrosine kinase. CD99 expression is tightly regulated through B-cell development. The principal aims of this study were to investigate the clinical utility of CD99 expression (i) in distinguishing normal plasma cells from primary plasma cell neoplasms; (ii) in detection of minimal residual disease in primary plasma cell neoplasms; and (iii) in distinguishing plasma cell component of B-cell lymphomas from primary plasma cell neoplasms. We analyzed expression of CD99 by flow cytometry and immunohistochemistry in lymph nodes, peripheral blood, and bone marrow samples. CD99 showed stage-specific expression with highest expression seen in precursor B and plasma cells. In contrast to the uniform bright expression on normal plasma cells, CD99 expression on neoplastic plasma cells was lost in 39 out of 56 (69.6%) cases. Furthermore, 8 out of 56 samples (14%) showed visibly (>10-fold) reduced CD99 expression. Overall, CD99 expression was informative (absent or visibly dimmer than normal) in 84% of primary plasma cell neoplasm. In the context of minimal residual disease detection, CD99 showed superior utility in separating normal and abnormal plasma cells over currently established antigens CD117, CD81, and CD27 by principal component analysis. Preservation of CD99 expression was strongly associated with cyclin D1 translocation in myeloma (p < 0.05). B-cell lymphomas with plasma cell component could be distinguished from myeloma by CD99 expression. In summary, we established that tumor suppressor CD99 is markedly downregulated in multiple myeloma. The loss is highly specific for identification of abnormal cells in primary plasma cell neoplasms, and can be exploited for diagnostic purposes. The role of CD99 in myeloma pathogenesis requires further investigation.