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Substitution of only two residues of human Hsp90α causes impeded dimerization of Hsp90β

机译:人类Hsp90α的仅两个残基取代会导致Hsp90β的二聚化受阻

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Two isoforms of the 90-kDa heat-shock protein (Hsp90), i.e., Hsp90α and Hsp90β, are expressed in the cytosol of mammalian cells. Although Hsp90 predominantly exists as a dimer, the dimer-forming potential of the β isoform of human and mouse Hsp90 is less than that of the α isoform. The 16 amino acid substitutions located in the 561–685 amino acid region of the C-terminal dimerization domain should be responsible for this impeded dimerization of Hsp90β (Nemoto T, Ohara-Nemoto Y, Ota M, Takagi T, Yokoyama K. Eur J Biochem 233: 1–8, 1995). The present study was performed to define the amino acid substitutions that cause the impeded dimerization of Hsp90β. Bacterial two-hybrid analysis revealed that among the 16 amino acids, the conversion from Ala558 of Hsp90β to Thr566 of Hsp90α and that from Met621 of Hsp90β to Ala629 of Hsp90α most efficiently reversed the dimeric interaction, and that the inverse changes from those of Hsp90α to Hsp90β primarily explained the impeded dimerization of Hsp90β We conclude that taken together, the conversion of Thr566 and Ala629 of Hsp90α to Ala558 and Met621 is primarily responsible for impeded dimerization of Hsp90β.
机译:90kDa热休克蛋白(Hsp90)的两个同工型,即Hsp90α和Hsp90β,在哺乳动物细胞的细胞质中表达。尽管Hsp90主要以二聚体形式存在,但人和小鼠Hsp90的β同种型的二聚体形成潜能要小于α同种型。位于C端二聚化结构域的561–685个氨基酸区域中的16个氨基酸取代应导致Hsp90β的这种二聚化受阻(Nemoto T,Ohara-Nemoto Y,Ota M,Takagi T,Yokoyama K. Eur J生物化学233:1-8,1995年。进行本研究以定义引起Hsp90β二聚化受阻的氨基酸取代。细菌两杂交分析显示,在这16个氨基酸中,从Hsp90β的Ala558到Hsp90α的Thr566的转换以及从Hsp90β的Met621到Hsp90α的Ala629的转换最有效地逆转了二聚体相互作用,并且从Hsp90α到Hsp90α的逆向变化是相反的。 Hsp90β主要解释了Hsp90β的二聚化受阻我们得出结论,总的来说,Hsp90α的Thr566和Ala629转化为Ala558和Met621的主要原因是Hsp90β的二聚化受阻。

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