首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Kinetic analysis of genomewide gene expression reveals molecule circuitries that control T cell activation and Th1/2 differentiation
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Kinetic analysis of genomewide gene expression reveals molecule circuitries that control T cell activation and Th1/2 differentiation

机译:全基因组基因表达的动力学分析揭示了控制T细胞活化和Th1 / 2分化的分子电路

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摘要

The global gene expression profiling of early T helper (Th) 1 and Th2 differentiation reveals that this process can be divided into two stages, activation and differentiation. The activation stage is manifested in coordinated mobilization of the replication machinery, a process that we hypothesize may be responsible for establishing genomewide opening of transcription loci. The molecular programs underlying the differentiation stage consist of highly regulated expression of functional groups of genes that are important for the biological properties of Th1/2 cells and transcription factors that are likely important in establishing terminal differentiation of these cells. The kinetics of expression pattern of a number of transcription factors shed new light on the molecular events that shape the outcome of Th1/2 differentiation.
机译:早期T辅助(Th)1和Th2分化的整体基因表达谱显示该过程可以分为激活和分化两个阶段。激活阶段表现为复制机器的协调动员,我们假设该过程可能负责建立转录基因座的全基因组开放。分化阶段的分子程序由对Th1 / 2细胞生物学特性重要的基因功能基团的高度调节表达和对建立这些细胞的终末分化可能很重要的转录因子组成。许多转录因子表达模式的动力学为塑造Th1 / 2分化结果的分子事件提供了新的思路。

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