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与运动神经元病相关的人源小分子热休克蛋白 HspB1 的 G84R 和 L99M 突变体的结构和性质。

Structure and properties of G84R and L99M mutants of human small heat shock protein HspB1 correlating with motor neuropathy.

机构信息

Department of Biochemistry, School of Biology, Moscow State University, Moscow 119991, Russian Federation.

出版信息

Arch Biochem Biophys. 2013 Oct 1;538(1):16-24. doi: 10.1016/j.abb.2013.07.028. Epub 2013 Aug 12.

Abstract

Some properties of G84R and L99M mutants of HspB1 associated with peripheral distal neuropathies were investigated. Homooligomers formed by these mutants are larger than those of the wild type HspB1. Large oligomers of G84R and L99M mutants have compromised stability and tend to dissociate at low protein concentration. G84R and L99M mutations promote phosphorylation-dependent dissociation of HspB1 oligomers without affecting kinetics of HspB1 phosphorylation by MAPKAP2 kinase. Both mutants weakly interact with HspB6 forming small heterooligomers and being unable to form large heterooligomers characteristic for the wild type HspB1. G84R and L99M mutants possess lower chaperone-like activity than the wild type HspB1 with several model substrates. We suggest that G84R mutation affects mobility and accessibility of the N-terminal domain thus modifying interdimer contacts in HspB1 oligomers. The L99M mutation is located within the hydrophobic core of the α-crystallin domain close to the key R140 residue, and could affect the dimer stability.

摘要

研究了与周围远端神经病相关的 HspB1 的 G84R 和 L99M 突变体的一些特性。这些突变体形成的同源寡聚物比野生型 HspB1 的更大。G84R 和 L99M 突变体的大寡聚物稳定性降低,在低蛋白浓度下容易解离。G84R 和 L99M 突变促进 HSPB1 寡聚物的磷酸化依赖性解离,而不影响 MAPKAP2 激酶对 HSPB1 磷酸化的动力学。这两种突变体与 HspB6 的弱相互作用形成小异源寡聚物,并且不能形成大异源寡聚物,这是野生型 HspB1 的特征。与几种模型底物相比,G84R 和 L99M 突变体的伴侣样活性低于野生型 HspB1。我们认为 G84R 突变影响 N 端结构域的迁移率和可及性,从而改变 HspB1 寡聚物中二聚体之间的接触。L99M 突变位于α-晶状体蛋白结构域的疏水核心内,靠近关键的 R140 残基,可能影响二聚体的稳定性。

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