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包装诱导的α-晶状体蛋白亚基的构象和功能变化。

Packing-induced conformational and functional changes in the subunits of alpha -crystallin.

作者信息

Datta S A, Rao C M

机构信息

Centre for Cellular and Molecular Biology, Hyderabad 500 007, India.

出版信息

J Biol Chem. 2000 Dec 29;275(52):41004-10. doi: 10.1074/jbc.M007686200.

Abstract

The heteroaggregate alpha-crystallin and homoaggregates of its subunits, alphaA- and alphaB-crystallins, function like molecular chaperones and prevent the aggregation of several proteins. Although modulation of the chaperone-like activity of alpha-crystallin by both temperature and chaotropic agents has been demonstrated in vitro, the mechanism(s) of its regulation in vivo have not been elucidated. The subunits of alpha-crystallin exchange freely, resulting in its dynamic and variable quaternary structure. Mixed aggregates of the alpha-crystallins and other mammalian small heat shock proteins (sHSPs) have also been observed in vivo. We have investigated the time-dependent structural and functional changes during the course of heteroaggregate formation by the exchange of subunits between homoaggregates of alphaA- and alphaB-crystallins. Native isoelectric focusing was used to follow the time course of subunit exchange. Circular dichroism revealed large tertiary structural alterations in the subunits upon subunit exchange and packing into heteroaggregates, indicating specific homologous and heterologous interactions between the subunits. Subunit exchange also resulted in quaternary structural changes as demonstrated by gel filtration chromatography. Interestingly, we found time-dependent changes in chaperone-like activity against the dithiothreitol-induced aggregation of insulin, which correlated with subunit exchange and the resulting tertiary and quaternary structural changes. Heteroaggregates of varying subunit composition, as observed during eye lens epithelial cell differentiation, generated by subunit exchange displayed differential chaperone-like activity. It was possible to alter chaperone-like activity of preexisting oligomeric sHSPs by alteration of subunit composition by subunit exchange. Our results demonstrate that subunit exchange and the resulting structural and functional changes observed could constitute a mechanism of regulation of chaperone-like activity of alpha-crystallin (and possibly other mammalian sHSPs) in vivo.

摘要

杂聚体α-晶体蛋白及其亚基αA-和αB-晶体蛋白的同聚体具有分子伴侣的功能,可防止多种蛋白质聚集。尽管在体外已证实温度和离液剂均可调节α-晶体蛋白的分子伴侣样活性,但其体内调节机制尚未阐明。α-晶体蛋白的亚基可自由交换,从而形成动态可变的四级结构。在体内也观察到了α-晶体蛋白与其他哺乳动物小热休克蛋白(sHSP)的混合聚集体。我们通过αA-和αB-晶体蛋白同聚体之间的亚基交换,研究了杂聚体形成过程中随时间变化的结构和功能变化。采用天然等电聚焦法跟踪亚基交换的时间进程。圆二色性显示,亚基交换并组装成杂聚体后,亚基的三级结构发生了很大变化,表明亚基之间存在特定的同源和异源相互作用。凝胶过滤色谱法显示,亚基交换还导致了四级结构的变化。有趣的是,我们发现,针对二硫苏糖醇诱导的胰岛素聚集,分子伴侣样活性随时间变化,这与亚基交换以及由此产生的三级和四级结构变化相关。在晶状体上皮细胞分化过程中观察到的由亚基交换产生的不同亚基组成的杂聚体,表现出不同的分子伴侣样活性。通过亚基交换改变亚基组成,可以改变预先存在的寡聚体小热休克蛋白的分子伴侣样活性。我们的结果表明,亚基交换以及由此观察到的结构和功能变化可能构成了体内调节α-晶体蛋白(可能还有其他哺乳动物小热休克蛋白)分子伴侣样活性的一种机制。

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