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Charged linker sequence modulates eukaryotic heat shock protein 90 (Hsp90) chaperone activity

机译:带电的接头序列调节真核热休克蛋白90(Hsp90)伴侣活性

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摘要

Hsp90 is an essential and highly conserved modular molecular chaperone whose N and middle domains are separated by a disordered region termed the charged linker. Although its importance has been previously disregarded, because a minimal linker length is sufficient for Hsp90 activity, the evolutionary persistence of extensive charged linkers of divergent sequence in Hsp90 proteins of most eukaryotes remains unexplained. To examine this question further, we introduced human and plasmodium native and length-matched artificial linkers into yeast Hsp90. After evaluating ATPase activity and biophysical characteristics in vitro, and chaperone function in vivo, we conclude that linker sequence affects Hsp90 function, cochaperone interaction, and conformation. We propose that the charged linker, in addition to providing the flexibility necessary for Hsp90 domain rearrangements-likely its original purpose-has evolved in eukaryotes to serve as a rheostat for the Hsp90 chaperone machine.
机译:Hsp90是必不可少的和高度保守的模块化分子伴侣,其N和中间域被称为带电荷​​的连接器的无序区分开。尽管其重要性以前已被忽略,但由于最小的接头长度足以满足Hsp90的活性,大多数真核生物的Hsp90蛋白中发散序列的广泛带电接头在进化上的持久性仍然无法解释。为了进一步研究这个问题,我们将人类和疟原虫的天然和长度匹配的人工接头引入了酵母Hsp90。在评估了ATPase的活性和体外生物物理特性以及体内的伴侣功能后,我们得出结论,接头序列会影响Hsp90的功能,伴侣分子的相互作用和构象。我们建议带电的连接子,除了提供Hsp90域重排所必需的灵活性(可能是其最初目的)外,已经在真核生物中进化为Hsp90分子伴侣机的变阻剂。

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