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小热休克蛋白的亚基交换。通过荧光共振能量转移和定点截短分析αA-晶体蛋白和Hsp27的寡聚体形成。

Subunit exchange of small heat shock proteins. Analysis of oligomer formation of alphaA-crystallin and Hsp27 by fluorescence resonance energy transfer and site-directed truncations.

作者信息

Bova M P, McHaourab H S, Han Y, Fung B K

机构信息

Jules Stein Eye Institute, UCLA School of Medicine, Los Angeles, California 90095, USA.

出版信息

J Biol Chem. 2000 Jan 14;275(2):1035-42. doi: 10.1074/jbc.275.2.1035.

DOI:10.1074/jbc.275.2.1035
PMID:10625643
Abstract

alphaA-Crystallin, a member of the small heat shock protein (sHsp) family, is a large multimeric protein composed of 30-40 identical subunits. Its quaternary structure is highly dynamic, with subunits capable of freely and rapidly exchanging between oligomers. We report here the development of a fluorescence resonance energy transfer method for measuring structural compatibility between alphaA-crystallin and other proteins. We found that Hsp27 and alphaB-crystallin readily exchanged with fluorescence-labeled alphaA-crystallin, but not with other proteins structurally unrelated to sHsps. Truncation of 19 residues from the N terminus or 10 residues from the C terminus of alphaA-crystallin did not significantly change its subunit organization or exchange rate constant. In contrast, removal of the first 56 or more residues converts alphaA-crystallin into a predominantly small multimeric form consisting of three or four subunits, with a concomitant loss of exchange activity. These findings suggest residues 20-56 are essential for the formation of large oligomers and the exchange of subunits. Similar results were obtained with truncated Hsp27 lacking the first 87 residues. We further showed that the exchange rate is independent of alphaA-crystallin concentration, suggesting subunit dissociation may be the rate-limiting step in the exchange reaction. Our findings reveal a quarternary structure of alphaA-crystallin, consisting of small multimers of alphaA-crystallin subunits in a dynamic equilibrium with the oligomeric complex.

摘要

αA-晶体蛋白是小热休克蛋白(sHsp)家族的成员,是一种由30-40个相同亚基组成的大型多聚体蛋白。其四级结构高度动态,亚基能够在寡聚体之间自由快速地交换。我们在此报告了一种用于测量αA-晶体蛋白与其他蛋白质之间结构兼容性的荧光共振能量转移方法的开发。我们发现Hsp27和αB-晶体蛋白很容易与荧光标记的αA-晶体蛋白交换,但与其他与sHsps结构无关的蛋白质则不会。从αA-晶体蛋白的N端截去19个残基或从C端截去10个残基不会显著改变其亚基组织或交换速率常数。相比之下,去除前56个或更多残基会将αA-晶体蛋白转化为主要由三个或四个亚基组成的小多聚体形式,同时丧失交换活性。这些发现表明20-56位残基对于大寡聚体的形成和亚基交换至关重要。用截去前87个残基的Hsp27也得到了类似的结果。我们进一步表明交换速率与αA-晶体蛋白浓度无关,这表明亚基解离可能是交换反应中的限速步骤。我们的发现揭示了αA-晶体蛋白的四级结构,由αA-晶体蛋白亚基的小多聚体与寡聚体复合物处于动态平衡组成。

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