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中文摘要
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描述(由申请人提供):了解促进谱系承诺和消除胸腺自身反应性胸腺细胞的遗传机制与人类疾病有直接关系。我的研究涉及识别在胸腺发育和分化中重要的新分子,并表征它们在调节自我和非自我免疫反应中的分子基础。研究和理解自身耐受机制有助于对有害自身免疫性疾病患者进行治疗。
英文摘要
DESCRIPTION (provided by applicant): Understanding the genetic mechanisms that promote lineage commitment and eliminate autoreactive thymocytes in the thymus has direct relation to human disease. My research involves identifying new molecules important in the development and differentiation of the thymus, and characterizing their molecular basis in regulating immune responses to both self and non-self. Studying and understanding self-tolerance mechanisms may result in therapeutic treatments for patients with harmful autoimmune diseases. My experimental design involves the identification and characterization of novel molecules necessary for proper cell development and differentiation. I use genomics (Serial Analysis of Gene Expression) to identify specific gene products differentially expressed in distinct T cell populations. I then characterize the molecules with a novel RNAi method to generate gene-specific deficient mice. In brief, lentivirus containing gene specific shRNA is introduced into purified hematopoetic stem cells (HSC's). RAG2 -/- recipient mice are then reconstituted with HSC's to generate gene-specific knockdown mice. With these combined genomic and RNAi-based methodologies I identified and characterized MINK (Misshapen-NIK-related kinase), which is important for negative selection in the thymus. Further, I aim to extend the use of these approaches to characterize other molecules identified by SAGE. This research will contribute to identifying new molecules important for immune responses and self-tolerance. Moreover, the rapid characterization of their biological functions will help to understand and find the proper targets for treating autoimmune diseases.
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Delineating roles for a novel tri-protein complex (TRIM44) in the multiple myeloma stem cell niche
Targeting Stem-Cell Dependent Drug Resistance in Human MCL
Targeting Stem-Cell Dependent Drug Resistance in Human MCL
Targeting Stem-Cell Dependent Drug Resistance in Human MCL
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