【2h】

Akirin

机译:秋林

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摘要

Embryonic patterning relies upon an exquisitely timed program of gene regulation. While the regulation of this process via the action of transcription factor networks is well understood, new lines of study have highlighted the importance of a concurrently regulated program of chromatin remodeling during development. Chromatin remodeling refers to the manipulation of the chromatin architecture through rearrangement, repositioning, or restructuring of nucleosomes to either favor or hinder the expression of associated genes. While the role of chromatin remodeling pathways during tumor development and cancer progression are beginning to be clarified, the roles of these pathways in the course of tissue specification, morphogenesis and patterning remains relatively unknown. Further, relatively little is understood as to the mechanism whereby developmentally critical transcription factors coordinate with chromatin remodeling factors to optimize target gene loci for gene expression. Such a mechanism might involve direct transcription factor/chromatin remodeling factor interactions, or could likely be mediated via an unknown intermediary. Our group has identified the relatively unknown protein Akirin as a putative member of this latter group: a secondary cofactor that serves as an interface between a developmentally critical transcription factor and the chromatin remodeling machinery. This role for the Akirin protein suggests a novel regulatory mode for regulating gene expression during development.
机译:胚胎模式依赖于精确的基因调控程序。虽然通过转录因子网络的作用对该过程的调节已广为人知,但新的研究重点突出了在发育过程中同时调节染色质重塑程序的重要性。染色质重塑是指通过重排,重新定位或重组核小体以促进或阻碍相关基因的表达来操纵染色质结构。虽然染色质重塑途径在肿瘤发展和癌症进展中的作用已开始阐明,但这些途径在组织规格,形态发生和模式形成过程中的作用仍然相对未知。此外,对于发育关键的转录因子与染色质重塑因子协调以优化用于基因表达的靶基因位点的机制了解得很少。这种机制可能涉及直接转录因子/染色质重塑因子的相互作用,或者可能是通过未知的媒介介导的。我们小组确定了相对未知的蛋白Akirin作为后者的推定成员:次要辅助因子,在发育关键转录因子和染色质重塑机制之间起着界面作用。秋葵蛋白的这种作用提示了在发育过程中调节基因表达的新型调节模式。

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