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人βB2-晶状体蛋白对体内修饰的抗性。

Resistance of human betaB2-crystallin to in vivo modification.

作者信息

Zhang Z, David L L, Smith D L, Smith J B

机构信息

Department of Chemistry, University of Nebraska, Lincoln, NE 68588-0304, USA.

出版信息

Exp Eye Res. 2001 Aug;73(2):203-11. doi: 10.1006/exer.2001.1023.

Abstract

Post-translational modifications and/or structural changes induced by modifications are likely causes of the decrease in crystallin solubility associated with aging and the development of cataract. Characterization of human lens crystallins by mass spectrometry has demonstrated that betaB2-crystallin undergoes less modification than any of the other crystallins. As the lens ages, betaB2-crystallin retains its hydrophilic N-terminus while the hydrophilic C-termini of alpha-crystallins and large portions of the N-termini of betaA3/A1 and betaB1 are truncated. The hydrophilic terminal regions of crystallins contribute to their solubility. Furthermore, deamidation and disulfide bond formation, other modifications that may affect solubility by altering conformation, are less extensive in betaB2 than in the other crystallins. This resistance to modification results in higher levels of betaB2 compared with the other crystallins in the water-soluble fraction of older lenses. The solubility of betaB2 and its propensity to form non-covalent associations with less soluble beta-crystallins may contribute to the solubility of the other beta-crystallins. A current hypothesis is that the chaperone-like properties of alpha-crystallins contribute to lens crystallin solubility, particularly in younger lenses. In older lenses, where most of the alpha-crystallins have become water-insoluble, betaB2-crystallins may play a dominant role in lens crystallin solubility.

摘要

翻译后修饰和/或由修饰引起的结构变化可能是与衰老和白内障发展相关的晶状体蛋白溶解度降低的原因。通过质谱对人晶状体晶状体蛋白进行表征表明,βB2-晶状体蛋白的修饰比其他任何晶状体蛋白都少。随着晶状体老化,βB2-晶状体蛋白保留其亲水性N端,而α-晶状体蛋白的亲水性C端以及βA3/A1和βB1的N端大部分被截断。晶状体蛋白的亲水性末端区域有助于其溶解性。此外,脱酰胺作用和二硫键形成,这两种可能通过改变构象影响溶解性的其他修饰,在βB2中比在其他晶状体蛋白中程度更低。这种对修饰的抗性导致在老年晶状体的水溶性部分中βB2的水平高于其他晶状体蛋白。βB2的溶解性及其与溶解性较低的β-晶状体蛋白形成非共价缔合的倾向可能有助于其他β-晶状体蛋白的溶解性。目前的一个假说是,α-晶状体蛋白的伴侣样特性有助于晶状体蛋白的溶解性,特别是在年轻晶状体中。在大多数α-晶状体蛋白已变得不溶于水的老年晶状体中,βB2-晶状体蛋白可能在晶状体蛋白溶解性中起主导作用。

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