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The biochemical properties of the ATPase activity of a 70-kDa heat shock protein (Hsp70) are governed by the C-terminal domains

机译:70 kDa热激蛋白(Hsp70)的ATPase活性的生化特性受C末端结构域支配

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摘要

The cytosolic 70-kDa heat shock proteins (Hsp70s), Ssa and Ssb, of Saccharomyces cerevisiae are functionally distinct. Here we report that the ATPase activities of these two classes of Hsp70s exhibit different kinetic properties. The Ssa ATPase has properties similar to those of other Hsp70s studied, such as DnaK and Hsc70. Ssb, however, has an unusually low steady-state affinity for ATP but a higher maximal velocity. In addition, the ATPase activity of Hsp70s, like that of Ssa1, depends on the addition of K+ whereas Ssb activity does not. Suprisingly, the isolated 44-kDa ATPase domain of Ssb has a Km and Vmax for ATP hydrolysis similar to those of Ssa, rather than those of full length Ssb. Analysis of Ssa/Ssb fusion proteins demonstrates that the Ssb peptide-binding domain fused to the Ssa ATPase domain generates an ATPase of relatively high activity and low steady-state affinity for ATP similar to that of native Ssb. Therefore, at least some of the biochemical differences between the ATPases of these two classes of Hsp70s are not intrinsic to the ATPase domain itself. The differential influence of the peptide-binding domain on the ATPase domain may, in part, explain the functional uniqueness of these two classes of Hsp70s.
机译:酿酒酵母的胞质70 kDa热激蛋白(Hsp70s)Ssa和Ssb在功能上是不同的。在这里,我们报告这两种Hsp70s的ATPase活性表现出不同的动力学特性。 Ssa ATPase具有与研究的其他Hsp70相似的特性,例如DnaK和Hsc70。但是,Ssb对ATP的稳态亲和力异常低,但最大速度较高。此外,Hsp70s的ATPase活性与Ssa1一样,取决于K + 的添加,而Ssb活性则不。令人惊讶地,分离的Ssb的44-kDa ATP酶结构域具有类似于Ssa的Km和Vmax,用于ATP水解,而不是全长的Ssb。对Ssa / Ssb融合蛋白的分析表明,与Ssa ATPase域融合的Ssb肽结合结构域生成的ATPase具有相对较高的活性,并且对ATP的亲和力较低,与天然Ssb相似。因此,这两类Hsp70的ATPase之间的至少某些生化差异不是ATPase域本身固有的。肽结合结构域对ATPase结构域的不同影响可能部分解释了这两类Hsp70的功能独特性。

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