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首页> 外文期刊>Cell biology international. >Evidence that the novobiocin-sensitive ATP-binding site of the heat shock protein 90 (hsp90) is necessary for its autophosphorylation.
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Evidence that the novobiocin-sensitive ATP-binding site of the heat shock protein 90 (hsp90) is necessary for its autophosphorylation.

机译:热休克蛋白90(hsp90)的新霉素敏感的ATP结合位点对其自身磷酸化所必需的证据。

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摘要

The 90kDa heat shock protein (Hsp90) is one of the most abundant protein and essential for all eukaryotic cells. Many proteins require the interaction with Hsp90 for proper function. Upon heat stress the expression level of Hsp90 is even enhanced. It is assumed, that under these conditions Hsp90 is required to protect other proteins from aggregation. One property of Hsp90 is its ability to undergo autophosphorylation. The N-terminal domain of Hsp90 has been shown to contain an unusual ATP-binding site. A well-known inhibitor of Hsp90 function is geldanamycin binding to the N-terminal ATP-binding site with high affinity. Recently it was shown that Hsp90 possesses a second ATP-binding site in the C-terminal region, which can be competed with novobiocin. Autophosphorylation of Hsp90 was analysed by incubation with gamma(32)P-ATP. Addition of geldanamycin did not interfere with the capability for autophosphorylation, while novobiocin indeed did. These results suggest that the C-terminal ATP-binding site is required for autophosphorylation of Hsp90.
机译:90kDa热激蛋白(Hsp90)是最丰富的蛋白之一,对于所有真核细胞都是必不可少的。许多蛋白质需要与Hsp90相互作用才能发挥功能。在热应激下,Hsp90的表达水平甚至被提高。假定在这些条件下需要Hsp90保护其他蛋白质免于聚集。 Hsp90的一项特性是其进行自磷酸化的能力。已显示Hsp90的N末端结构域包含一个异常的ATP结合位点。 Hsp90功能的著名抑制剂是格尔德霉素以高亲和力与N末端ATP结合位点结合。最近显示,Hsp90在C末端区域具有第二个ATP结合位点,可以与新霉素竞争。通过与γ(32)P-ATP孵育分析Hsp90的自磷酸化。格尔德霉素的添加不会干扰自身磷酸化的能力,而新霉素确实会干扰。这些结果表明,Hsp90的自身磷酸化需要C端ATP结合位点。

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