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未折叠蛋白通过加速ADP/ATP交换来刺激分子伴侣Hsc70的ATP酶活性。

Unfolded proteins stimulate molecular chaperone Hsc70 ATPase by accelerating ADP/ATP exchange.

作者信息

Sadis S, Hightower L E

机构信息

Department of Molecular and Cell Biology, University of Connecticut, Storrs 06269-3044.

出版信息

Biochemistry. 1992 Oct 6;31(39):9406-12. doi: 10.1021/bi00154a012.

Abstract

The mammalian 70-kilodalton heat shock cognate protein (Hsc70) is an abundant, cytosolic molecular chaperone whose interactions with protein substrates are regulated by ATP hydrolysis. In vitro, purified Hsc70 was found to have a slow, intrinsic ATPase activity in the absence of protein substrates. The addition of an unfolded protein such as apocytochrome c stimulated ATP hydrolysis 2-3-fold. In contrast, the native holoprotein, cytochrome c, did not stimulate the ATPase rate, in accord with recent observations that 70-kilodalton heat shock proteins interact selectively with unfolded proteins. Stimulation of ATP hydrolysis by apocytochrome c was due to an increase in the Vmax, with no effect on the Km for ATP. Following hydrolysis of [3H]ATP, a relatively stable [3H]ADP.Hsc70 complex was formed. Release of [3H]ADP from Hsc70 was most efficient in the presence of other nucleotides such as ADP or ATP, suggesting that ADP release occurs as an ADP/ATP exchange reaction. The loss of radiolabeled ADP from Hsc70 in the presence of exogenous nucleotides followed first-order kinetics. In the presence of nucleotides, apocytochrome c induced a 2-fold increase in the rate of ADP release from Hsc70. Moreover, rate constants of the nucleotide exchange reaction measured in the absence and presence of apocytochrome c (0.16 and 0.34 min-1, respectively) closely matched the kcat values derived from ATP hydrolysis measurements (0.15 and 0.38 min-1, respectively). The results suggest that ADP release in a rate-limiting step in the Hsc70 ATPase reaction and that unfolded proteins stimulate ATP hydrolysis by accelerating the rate of ADP/ATP exchange.

摘要

哺乳动物70千道尔顿热休克同源蛋白(Hsc70)是一种丰富的胞质分子伴侣,其与蛋白质底物的相互作用受ATP水解调节。在体外,发现纯化的Hsc70在没有蛋白质底物的情况下具有缓慢的内在ATP酶活性。添加诸如脱辅基细胞色素c之类的未折叠蛋白可刺激ATP水解2至3倍。相比之下,天然全蛋白细胞色素c并未刺激ATP酶速率,这与最近关于70千道尔顿热休克蛋白与未折叠蛋白选择性相互作用的观察结果一致。脱辅基细胞色素c对ATP水解的刺激是由于Vmax增加,而对ATP的Km没有影响。[3H]ATP水解后,形成了相对稳定的[3H]ADP·Hsc70复合物。在存在其他核苷酸如ADP或ATP的情况下,[3H]ADP从Hsc70的释放最为有效,这表明ADP的释放是作为ADP/ATP交换反应发生的。在存在外源核苷酸的情况下,Hsc70中放射性标记的ADP的损失遵循一级动力学。在存在核苷酸的情况下,脱辅基细胞色素c使Hsc70中ADP的释放速率增加了2倍。此外,在不存在和存在脱辅基细胞色素c的情况下测得的核苷酸交换反应的速率常数(分别为0.16和0.34 min-1)与从ATP水解测量得出的kcat值(分别为0.15和0.38 min-1)紧密匹配。结果表明,ADP的释放在Hsc70 ATP酶反应中是限速步骤,并且未折叠蛋白通过加速ADP/ATP交换速率来刺激ATP水解。

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