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类固醇受体磷酸化:多种受体功能的关键调节因子。

Steroid receptor phosphorylation: a key modulator of multiple receptor functions.

作者信息

Weigel Nancy L, Moore Nicole L

机构信息

Department of Molecular and Cellular Biology, Baylor College of Medicine, Houston, Texas 77030, USA.

出版信息

Mol Endocrinol. 2007 Oct;21(10):2311-9. doi: 10.1210/me.2007-0101. Epub 2007 May 29.

Abstract

Steroid receptors are hormone-activated transcription factors, the expression and activities of which are also highly dependent upon posttranslational modifications including phosphorylation. The remarkable number of phosphorylation sites in these receptors and the wide variety of kinases participating in their phosphorylation facilitate integration between cell-signaling pathways and steroid receptor action. Sites have been identified in all of the functional domains although the sites are predominantly in the amino-terminal portions of the receptors. Regulation of function is receptor specific, site specific, and often dependent upon activation of a specific cell-signaling pathway. This complexity explains, in part, the early difficulties in identifying roles for phosphorylation in receptor function. With increased availability of phosphorylation site-specific antibodies and better means to measure receptor activities, numerous roles for site-specific phosphorylation have been identified including sensitivity of response to hormone, DNA binding, expression, stability, subcellular localization, and protein-protein interactions that determine the level of regulation of specific target genes. This review summarizes current knowledge regarding receptor phosphorylation and regulation of function. As functional assays become more sophisticated, it is likely that additional roles for phosphorylation in receptor function will be identified.

摘要

类固醇受体是激素激活的转录因子,其表达和活性也高度依赖于包括磷酸化在内的翻译后修饰。这些受体中磷酸化位点数量众多,参与其磷酸化的激酶种类繁多,这促进了细胞信号通路与类固醇受体作用之间的整合。尽管这些位点主要位于受体的氨基末端部分,但在所有功能域中均已鉴定出这些位点。功能调节具有受体特异性、位点特异性,且通常依赖于特定细胞信号通路的激活。这种复杂性部分解释了早期在确定磷酸化在受体功能中的作用时所遇到的困难。随着磷酸化位点特异性抗体的可用性增加以及测量受体活性的更好方法的出现,已确定了位点特异性磷酸化的众多作用,包括对激素反应的敏感性、DNA结合、表达、稳定性、亚细胞定位以及决定特定靶基因调控水平的蛋白质-蛋白质相互作用。本综述总结了有关受体磷酸化和功能调节的当前知识。随着功能测定变得更加复杂,可能会发现磷酸化在受体功能中的更多作用。

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