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在经钙离子处理的晶状体中形成55000道尔顿的交联β-晶状体蛋白二聚体。白内障的一种模型。

Formation of a 55 000-weight cross-linked beta crystallin dimer in the Ca2+-treated lens. A model for cataract.

作者信息

Lorand L, Conrad S M, Velasco P T

出版信息

Biochemistry. 1985 Mar 12;24(6):1525-31. doi: 10.1021/bi00327a035.

Abstract

Incubation of lens in Ca2+-containing media, considered by several investigators to be a useful model of cataract formation, gave rise to significant alterations in the covalent structures of various proteins. In rabbit lens, when sodium dodecyl sulfate-polyacrylamide gel electrophoresis was used after reduction of disulfides in urea, the most readily observable changes were (i) disappearance of 210K, 95K, and 60K proteins, (ii) modifications of alpha crystallin subunits, (iii) alterations of beta H crystallins, and (iv) de novo production of 55K and higher molecular weight polymers. The addition of leupeptin inhibited the disappearances of 210K, 95K, and 60K proteins and the alteration of alpha crystallins, suggesting that all these were caused by a Ca2+-activated protease. The proteolytically sensitive 60K species was identified as vimentin, a component of intermediate filaments. Formation of the 55K material and of higher molecular weight polymers during Ca2+ treatment of the lens could be prevented by histamine, a compound known to inhibit the transglutaminase-mediated cross-linking of proteins by epsilon-(gamma-glutamyl)lysine peptide bonds in other biological systems. It could also be shown by immunoblotting that an antibody raised against the 55K material reacted selectively with beta crystallins of normal lens. This indicates that the 55K product is in all likelihood an essential intermediate toward higher polymers and that the 55K product is a cross-linked dimer of certain polypeptides of beta crystallin.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

将晶状体置于含钙离子的培养基中培养,一些研究人员认为这是一种有用的白内障形成模型,这种培养导致了各种蛋白质共价结构的显著改变。在兔晶状体中,当在尿素中还原二硫键后使用十二烷基硫酸钠 - 聚丙烯酰胺凝胶电泳时,最容易观察到的变化有:(i)210K、95K和60K蛋白质消失;(ii)α - 晶状体蛋白亚基发生修饰;(iii)βH - 晶状体蛋白发生改变;(iv)新产生55K及更高分子量的聚合物。添加亮抑酶肽可抑制210K、95K和60K蛋白质的消失以及α - 晶状体蛋白的改变,这表明所有这些变化都是由钙离子激活的蛋白酶引起的。对蛋白水解敏感的60K物质被鉴定为波形蛋白,它是中间丝的一个组成部分。在晶状体钙离子处理过程中,55K物质和更高分子量聚合物的形成可被组胺阻止,组胺是一种已知能在其他生物系统中抑制转谷氨酰胺酶介导的蛋白质通过ε - (γ - 谷氨酰)赖氨酸肽键进行交联的化合物。通过免疫印迹还可以表明,针对55K物质产生的抗体与正常晶状体的β - 晶状体蛋白发生选择性反应。这表明55K产物很可能是形成更高聚合物的关键中间体,并且55K产物是β - 晶状体蛋白某些多肽的交联二聚体。(摘要截短至250字)

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