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热休克蛋白 90 直接调节 AF9/MLLT3 的空间分布,并影响靶基因的表达。

Hsp90 directly modulates the spatial distribution of AF9/MLLT3 and affects target gene expression.

机构信息

Department of Biochemistry, Tulane University School of Medicine, New Orleans, Louisiana 70112, USA.

出版信息

J Biol Chem. 2010 Apr 16;285(16):11966-73. doi: 10.1074/jbc.M110.101642. Epub 2010 Feb 16.

Abstract

AF9/MLLT3 contributes to the regulation of the gene encoding the epithelial sodium channel alpha, ENaCalpha, in renal tubular cells. Specifically, increases in AF9 protein lead to a reduction in ENaCalpha expression and changes in AF9 activity appear to be an important component of aldosterone signaling in the kidney. Whereas AF9 is found in the nucleus where it interacts with the histone H3 lysine 79 methyltransferase, Dot1, AF9 is also present in the cytoplasm. Data presented in this report indicate that the heat shock protein Hsp90 directly and specifically interacts with AF9 as part of an Hsp90-Hsp70-p60/Hop chaperone complex. Experimental manipulation of Hsp90 function by the inhibitor novobiocin, but not 17-AAG, results in redistribution of AF9 from a primarily nuclear to cytoplasmic location. Knockdown of Hsp90 with siRNA mimics the effect elicited by novobiocin. As expected, a shift in AF9 from the nucleus to the cytoplasm in response to Hsp90 interference leads to increased ENaCalpha expression. This is accompanied by a decrease in AF9 occupancy at the ENaCalpha promoter. Our data suggest that the interaction of Hsp90, Hsp70, and p60/Hop with AF9 is necessary for the proper subnuclear localization and activity of AF9. AF9 is among a growing number of nuclear proteins recognized to rely on the Hsp90 complex for nuclear targeting.

摘要

AF9/MLLT3 有助于调节肾管状细胞中编码上皮钠通道 α(ENaCalpha)的基因。具体而言,AF9 蛋白的增加导致 ENaCalpha 表达的减少,而 AF9 活性的变化似乎是醛固酮在肾脏中信号传递的重要组成部分。虽然 AF9 存在于与组蛋白 H3 赖氨酸 79 甲基转移酶 Dot1 相互作用的核内,但 AF9 也存在于细胞质中。本报告中提供的数据表明,热休克蛋白 Hsp90 作为 Hsp90-Hsp70-p60/Hop 伴侣复合物的一部分,直接且特异性地与 AF9 相互作用。通过抑制剂 novobiocin 对 Hsp90 功能的实验操作,而不是 17-AAG,导致 AF9 从主要核内位置重新分布到细胞质位置。用 siRNA 敲低 Hsp90 可模拟 novobiocin 引起的效果。如预期的那样,Hsp90 干扰导致 AF9 从核内转移到细胞质中,从而导致 ENaCalpha 表达增加。这伴随着 AF9 在 ENaCalpha 启动子上的占据减少。我们的数据表明,Hsp90、Hsp70 和 p60/Hop 与 AF9 的相互作用对于 AF9 的适当亚核定位和活性是必要的。AF9 是越来越多的核蛋白之一,其依赖 Hsp90 复合物进行核靶向。

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