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Primary sequence contribution to the optical function of the eye lens

机译:主序列对眼镜片光学功能的贡献

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摘要

The crystallins have relatively high refractive increments compared to other proteins. The Greek key motif in βγ-crystallins was compared with that in other proteins, using predictive analysis from a protein database, to see whether this may be related to the refractive increment. Crystallins with Greek keys motifs have significantly higher refractive increments and more salt bridges than other proteins with Greek key domains. Specific amino acid substitutions: lysine and glutamic acid residues are replaced by arginine and aspartic acid, respectively as refractive increment increases. These trends are also seen in S-crystallins suggesting that the primary sequence of crystallins may be specifically enriched with amino acids with appropriate values of refractive increment to meet optical requirements. Comparison of crystallins from five species: two aquatic and three terrestrial shows that the lysine/arginine correlation with refractive increment occurs in all species investigated. This may be linked with formation and maintenance of salt bridges.
机译:与其他蛋白质相比,晶状蛋白具有相对较高的折光增量。使用蛋白质数据库中的预测分析,将βγ-晶状蛋白中的希腊语关键基序与其他蛋白质中的希腊语基序进行了比较,以了解这是否与屈光度增加有关。具有希腊键结构的Crystallins与具有希腊键结构域的其他蛋白质相比,具有更高的折光增量和更多的盐桥。特定的氨基酸取代:随着折射增加,赖氨酸和谷氨酸残基分别被精氨酸和天冬氨酸取代。在S-晶状蛋白中也可以看到这些趋势,这表明晶状蛋白的一级序列可以被特定地富含具有适当折射增量值的氨基酸以满足光学要求。比较五个物种(两个水生和三个陆地生的)的晶状蛋白显示,赖氨酸/精氨酸与折光增量的相关性在所有研究的物种中均发生。这可能与盐桥的形成和维护有关。

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