萎缩蛋白:一类新的核受体辅抑制因子的综述。

Nuclear receptor signaling Pub Date : 2008-01-01 Epub Date: 2008-10-31 DOI:10.1621/nrs.06009
Lei Wang, Chih-Cheng Tsai
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引用次数: 58

摘要

多细胞生物的正常发育和生理功能受复杂的基因转录网络调控,其中包括无数的转录因子、相关的共调节因子和多种染色质修饰因子。由这些元素之间的突变引起的异常基因转录调控常常导致发育缺陷和疾病。本文主要综述了Atrophin家族蛋白,包括脊椎动物Atrophin-1 (ATN1)、脊椎动物精氨酸-谷氨酸二肽重复蛋白(RERE)和果蝇Atrophin (Atro),这些蛋白最近被鉴定为核受体辅助抑制因子。atrophin介导通路的破坏导致小鼠、斑马鱼和果蝇的多种发育缺陷,而ATN1的异常形式和RERE表达水平的改变分别与人类的神经退行性疾病和癌症有关。我们在这里提供关于这些Atrophin蛋白的当前知识的概述。我们希望这些关于Atrophin蛋白的信息可以帮助激发新的想法,了解这类新发现的核受体辅抑制因子是如何帮助特定的核受体和其他转录因子调节基因转录、表现生理效应和引起疾病的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Atrophin proteins: an overview of a new class of nuclear receptor corepressors.

The normal development and physiological functions of multicellular organisms are regulated by complex gene transcriptional networks that include myriad transcription factors, their associating coregulators, and multiple chromatin-modifying factors. Aberrant gene transcriptional regulation resulting from mutations among these elements often leads to developmental defects and diseases. This review article concentrates on the Atrophin family proteins, including vertebrate Atrophin-1 (ATN1), vertebrate arginine-glutamic acid dipeptide repeats protein (RERE), and Drosophila Atrophin (Atro), which we recently identified as nuclear receptor corepressors. Disruption of Atrophin-mediated pathways causes multiple developmental defects in mouse, zebrafish, and Drosophila, while an aberrant form of ATN1 and altered expression levels of RERE are associated with neurodegenerative disease and cancer in humans, respectively. We here provide an overview of current knowledge about these Atrophin proteins. We hope that this information on Atrophin proteins may help stimulate fresh ideas about how this newly identified class of nuclear receptor corepressors aids specific nuclear receptors and other transcriptional factors in regulating gene transcription, manifesting physiological effects, and causing diseases.

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