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随着温度升高,α-晶状体蛋白的伴侣样活性与聚集体大小之间的相关性。

Correlation between the chaperone-like activity and aggregate size of alpha-crystallin with increasing temperature.

作者信息

Burgio M R, Kim C J, Dow C C, Koretz J F

机构信息

Center for Biophysics and Department of Biology, Rensselaer Polytechnic Institute, Troy, New York 12180-3590, USA.

出版信息

Biochem Biophys Res Commun. 2000 Feb 16;268(2):426-32. doi: 10.1006/bbrc.1999.2036.

Abstract

alpha-Crystallin, the major protein of the mammalian eye lens, is also found in the major tissues of the body, where one or the other of its two isoforms is characteristically expressed. Both isoform sequences are highly related to others of the small heat shock protein superfamily, leading to speculation about their functions in vivo outside of the lens. Tests of chaperone-like activity at 37 and 66 degrees C indicate that the protein can act to prevent the superaggregation of partially denatured proteins, but both alpha-crystallin aggregate size and shape are significantly altered with increasing temperature. Characterization of these changes indicates that secondary, tertiary, and quaternary structure are modified, with the latter effect especially striking above 50 degrees C. Furthermore, these changes appear to be irreversible when the temperature is returned to 25 or 37 degrees C. Functionally, the protein is effective in chaperone-like activity at all temperatures, but exhibits a somewhat increased capability after a cycle of heating and cooling. The results presented here indicate the heat-induced formation of high-molecular-weight aggregates of alpha-crystallin is a slow progressive process. The increased activity of these aggregates suggests that chaperone-like activity depends in part on the packing parameters of the aggregate and on conformation of the subunit within that aggregate.

摘要

α-晶状体蛋白是哺乳动物眼晶状体的主要蛋白质,在身体的主要组织中也有发现,其两种异构体中的一种或另一种在这些组织中具有特征性表达。两种异构体序列与小热休克蛋白超家族的其他成员高度相关,这引发了人们对它们在晶状体之外的体内功能的猜测。在37℃和66℃下对伴侣样活性的测试表明,该蛋白质可以起到防止部分变性蛋白质超聚集的作用,但随着温度升高,α-晶状体蛋白聚集体的大小和形状均发生显著改变。对这些变化的表征表明,二级、三级和四级结构都发生了改变,其中四级结构的变化在50℃以上尤为显著。此外,当温度恢复到25℃或37℃时,这些变化似乎是不可逆的。在功能上,该蛋白质在所有温度下都具有有效的伴侣样活性,但在经过一个加热和冷却循环后,其能力会有所增强。此处呈现的结果表明,热诱导的α-晶状体蛋白高分子量聚集体的形成是一个缓慢的渐进过程。这些聚集体活性的增加表明,伴侣样活性部分取决于聚集体的堆积参数以及该聚集体内亚基的构象。

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