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双色光漂白实验揭示了Hsp90复合物两个组分不同的细胞内动力学。

2-color photobleaching experiments reveal distinct intracellular dynamics of two components of the Hsp90 complex.

作者信息

Picard Didier, Suslova Elena, Briand Pierre-André

机构信息

Département de Biologie Cellulaire, Université de Genève, Sciences III, 30 quai Ernest-Ansermet, CH-1211 Genève 4, Switzerland.

出版信息

Exp Cell Res. 2006 Nov 15;312(19):3949-58. doi: 10.1016/j.yexcr.2006.08.026. Epub 2006 Sep 3.

DOI:10.1016/j.yexcr.2006.08.026
PMID:17010336
Abstract

The abundant molecular chaperone Hsp90 functions in association with co-chaperones including p23 to promote the folding and maturation of a subset of cytosolic proteins. "Fluorescence recovery after photobleaching" (FRAP) experiments showed that the dynamics of p23 in live cells is dictated by Hsp90. Since Hsp90 is present in large excess over p23, the mobility of Hsp90 could conceivably be quite different. To facilitate the analysis and to allow a direct comparison with p23, we developed a 2-color FRAP technique. Two test proteins are expressed as fusion proteins with the two spectrally separable fluorescent proteins mCherry and enhanced green fluorescent protein (EGFP). The 2-color FRAP technique is powerful for the concomitant recording of two proteins located in the same area of a cell, two components of the same protein complex, or mutant and wild-type versions of the same protein under identical experimental conditions. 2-color FRAP of Hsp90 and p23 is virtually indistinguishable, consistent with the notion that they are both engaged in a multitude of large protein complexes. However, when Hsp90-p23 complexes are disrupted by the Hsp90 inhibitor geldanamycin, p23 moves by free diffusion while Hsp90 maintains its low mobility because it remains bound in remodeled multicomponent complexes.

摘要

丰富的分子伴侣热休克蛋白90(Hsp90)与包括p23在内的共伴侣协同发挥作用,以促进一部分胞质蛋白的折叠和成熟。“光漂白后荧光恢复”(FRAP)实验表明,活细胞中p23的动态变化受Hsp90的支配。由于Hsp90的含量大大超过p23,因此可以想象Hsp90的流动性可能有很大不同。为便于分析并能与p23进行直接比较,我们开发了一种双色FRAP技术。两种测试蛋白被表达为与两种光谱可分离的荧光蛋白mCherry和增强型绿色荧光蛋白(EGFP)的融合蛋白。双色FRAP技术对于在相同实验条件下同时记录位于细胞同一区域的两种蛋白、同一蛋白复合物的两个组分或同一蛋白的突变体和野生型版本非常有效。Hsp90和p23的双色FRAP几乎无法区分,这与它们都参与多种大蛋白复合物的观点一致。然而,当Hsp90-p23复合物被Hsp90抑制剂格尔德霉素破坏时,p23通过自由扩散移动,而Hsp90保持其低流动性,因为它仍与重塑的多组分复合物结合。

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