Raman B, Ramakrishna T, Rao C M
Centre for Cellular and Molecular Biology, Hyderabad, India.
J Biol Chem. 1995 Aug 25;270(34):19888-92. doi: 10.1074/jbc.270.34.19888.
alpha-Crystallin, a multimeric protein present in the eye lens, is shown to have chaperone-like activity in preventing thermally induced aggregation of enzymes and other crystallins. We have studied the rapid refolding of alpha-crystallin, and compared it with other calf eye lens proteins, namely beta- and gamma-crystallins. alpha-Crystallin forms a clear solution upon rapid refolding from 8 M urea. The refolded alpha-crystallin has native-like secondary, tertiary, and quaternary structures as revealed by circular dichroism and fluorescence characteristics as well as gel filtration and sedimentation velocity measurements. On rapid refolding, beta- and gamma-crystallins aggregate and form turbid solutions. The presence of alpha-crystallin in the refolding buffer marginally increases the recovery of beta- and gamma-crystallins in the soluble form. However, unfolding of these crystallins together with alpha-crystallin using 8 M urea and subsequent refolding significantly increases the recovery of these proteins in the soluble form. These results indicate that an intermediate of alpha-crystallin formed during refolding is more effective in preventing the aggregation of beta- and gamma-crystallins. This supports our earlier hypothesis (Raman, B., and Rao, C. M. (1994) J. Biol. Chem. 269, 27264-27268) that the chaperone-like activity of alpha-crystallin is more pronounced in its structurally perturbed state.
α-晶状体蛋白是一种存在于眼晶状体中的多聚体蛋白,已被证明在防止酶和其他晶状体蛋白的热诱导聚集方面具有类似伴侣蛋白的活性。我们研究了α-晶状体蛋白的快速重折叠,并将其与其他小牛眼晶状体蛋白,即β-和γ-晶状体蛋白进行了比较。α-晶状体蛋白从8M尿素中快速重折叠后形成清澈的溶液。通过圆二色性、荧光特性以及凝胶过滤和沉降速度测量可知,重折叠后的α-晶状体蛋白具有类似天然的二级、三级和四级结构。快速重折叠时,β-和γ-晶状体蛋白会聚集并形成浑浊的溶液。重折叠缓冲液中α-晶状体蛋白的存在略微增加了可溶性β-和γ-晶状体蛋白的回收率。然而,使用8M尿素将这些晶状体蛋白与α-晶状体蛋白一起展开,随后进行重折叠,显著提高了这些蛋白以可溶形式的回收率。这些结果表明,重折叠过程中形成的α-晶状体蛋白中间体在防止β-和γ-晶状体蛋白聚集方面更有效。这支持了我们早期的假设(拉曼,B.,和拉奥,C.M.(1994年)《生物化学杂志》269卷,27264 - 27268页),即α-晶状体蛋白的类似伴侣蛋白的活性在其结构受到干扰的状态下更为明显。