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人核苷酸交换因子与热休克蛋白 70(Hsp70)的结合在体外产生功能不同的复合物。

Binding of human nucleotide exchange factors to heat shock protein 70 (Hsp70) generates functionally distinct complexes in vitro.

机构信息

From the Departments of Biochemistry and Pathology and the Life Sciences Institute, University of Michigan, Ann Arbor, Michigan 48109 and.

出版信息

J Biol Chem. 2014 Jan 17;289(3):1402-14. doi: 10.1074/jbc.M113.521997. Epub 2013 Dec 5.

Abstract

Proteins with Bcl2-associated anthanogene (BAG) domains act as nucleotide exchange factors (NEFs) for the molecular chaperone heat shock protein 70 (Hsp70). There are six BAG family NEFs in humans, and each is thought to link Hsp70 to a distinct cellular pathway. However, little is known about how the NEFs compete for binding to Hsp70 or how they might differentially shape its biochemical activities. Toward these questions, we measured the binding of human Hsp72 (HSPA1A) to BAG1, BAG2, BAG3, and the unrelated NEF Hsp105. These studies revealed a clear hierarchy of affinities: BAG3 > BAG1 > Hsp105 ≫ BAG2. All of the NEFs competed for binding to Hsp70, and their relative affinity values predicted their potency in nucleotide and peptide release assays. Finally, we combined the Hsp70-NEF pairs with cochaperones of the J protein family (DnaJA1, DnaJA2, DnaJB1, and DnaJB4) to generate 16 permutations. The activity of the combinations in ATPase and luciferase refolding assays were dependent on the identity and stoichiometry of both the J protein and NEF so that some combinations were potent chaperones, whereas others were inactive. Given the number and diversity of cochaperones in mammals, it is likely that combinatorial assembly could generate a large number of distinct permutations.

摘要

具有 Bcl2 相关抗凋亡基因(BAG)结构域的蛋白作为分子伴侣热休克蛋白 70(Hsp70)的核苷酸交换因子(NEF)。人类中有六种 BAG 家族 NEF,每种都被认为将 Hsp70 与独特的细胞途径联系起来。然而,对于 NEF 如何竞争与 Hsp70 结合,以及它们如何可能在其生化活性方面产生差异,人们知之甚少。针对这些问题,我们测量了人源 Hsp72(HSPA1A)与 BAG1、BAG2、BAG3 和不相关的 NEF Hsp105 的结合情况。这些研究揭示了明确的亲和力层次结构:BAG3>BAG1>Hsp105>≈BAG2。所有的 NEF 都竞争与 Hsp70 结合,它们的相对亲和力值预测了它们在核苷酸和肽释放测定中的效力。最后,我们将 Hsp70-NEF 对与 J 蛋白家族的共伴侣(DnaJA1、DnaJA2、DnaJB1 和 DnaJB4)结合,生成了 16 种组合。组合在 ATPase 和荧光素酶重折叠测定中的活性取决于 J 蛋白和 NEF 的身份和化学计量,因此一些组合是有效的伴侣,而另一些则无效。考虑到哺乳动物中 cochaperone 的数量和多样性,组合组装很可能会产生大量不同的组合。

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