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首页> 外文期刊>Journal of Molecular Biology >Charge-rich regions modulate the anti-aggregation activity of Hsp90.
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Charge-rich regions modulate the anti-aggregation activity of Hsp90.

机译:电荷丰富的区域调节Hsp90的抗聚集活性。

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摘要

Protein aggregation can have dramatic effects on cellular function and plays a causative role in many human diseases. In all cells, molecular chaperones bind to aggregation-prone proteins and hinder aggregation. The ability of a protein to resist aggregation and remain soluble in aqueous solution is linked to the physical properties of the protein. Numerous physical studies demonstrate that charged atoms favor solubility. We note that many molecular chaperones possess a substantial negative charge that may allow them to impart solubility on aggregation-prone proteins. Hsp90 is one such negatively charged molecular chaperone. The charge on Hsp90 is largely concentrated in two highly acidic regions. To investigate the relationship between chaperone charge and protein solubility, we deleted these charge-rich regions and analyzed the resulting Hsp90 constructs for anti-aggregation activity. We found that deletion of both charge-rich regions dramatically impaired Hsp90 anti-aggregation activity. The anti-aggregation role of the deleted charge-rich regions could be due to net charge or sequence-specific features. To distinguish these possibilities, we attached an acid-rich region with a distinct amino acid sequence to our double-deleted Hsp90 construct. This charge rescue construct displayed effective anti-aggregation activity indicating that the net charge of Hsp90 contributes to its anti-aggregation activity.
机译:蛋白质聚集可对细胞功能产生巨大影响,并在许多人类疾病中发挥致病作用。在所有细胞中,分子伴侣都结合易于聚集的蛋白质并阻碍聚集。蛋白质抵抗聚集并保持在水溶液中的能力与蛋白质的物理性质有关。大量物理研究表明,带电原子有利于溶解性。我们注意到许多分子伴侣具有很大的负电荷,这可能使它们在易于聚集的蛋白质上赋予溶解性。 Hsp90是这样一种带负电荷的分子伴侣。 Hsp90上的电荷主要集中在两个高酸性区域。为了研究伴侣电荷和蛋白质溶解度之间的关系,我们删除了这些电荷丰富的区域,并分析了所得的Hsp90构建体的抗聚集活性。我们发现删除两个电荷丰富的区域大大削弱了Hsp90抗聚集活性。缺失的电荷富集区的抗聚集作用可能是由于净电荷或序列特异性特征引起的。为了区分这些可能性,我们在双缺失的Hsp90构建体上附加了具有独特氨基酸序列的富酸区域。该电荷拯救构建体显示出有效的抗聚集活性,表明Hsp90的净电荷对其抗聚集活性有贡献。

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