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首页> 外文期刊>Physica, A. Statistical mechanics and its applications >Self-organized criticality and color vision: A guide to water-protein landscape evolution
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Self-organized criticality and color vision: A guide to water-protein landscape evolution

机译:自组织的临界度和色觉:水蛋白景观演变的指南

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We focus here on the scaling properties of small interspecies differences between red cone opsin transmembrane proteins, using a hydropathic elastic roughening tool previously applied to the rhodopsin rod transmembrane proteins. This tool is based on a non-Euclidean hydropathic metric realistically rooted in the atomic coordinates of 5526 protein segments, which thereby encapsulates universal non-Euclidean long-range differential geometrical features of water films enveloping globular proteins in the Protein Data Bank. Whereas the rhodopsin blue rod water films are smoothest in humans, the red cone opsins' water films are optimized for smoothness in cats and elephants, consistent with protein species landscapes that evolve differently in different contexts. We also analyze red cone opsins in the chromatophore-containing family of chameleons, snakes, zebrafish and goldfish, where short- and long-range (BLAST and hydropathic) amino acid (aa) correlations are found with values as large as 97%-99%. We use hydropathic aa optimization to estimate the maximum number~Nmax of color shades that the human eye can discriminate, and obtain 10~6< Nmax<10~7, in good agreement with experiment.
机译:我们在这里集中于使用以前应用于视紫红质棒跨膜蛋白的亲水弹性粗糙化工具,红锥视蛋白跨膜蛋白之间的小种间差异的缩放性质。该工具基于非欧氏亲水度量,该度量实际上扎根于5526个蛋白质片段的原子坐标,从而在蛋白质数据库中封装了包围球状蛋白质的水膜的通用非欧氏远距离微分几何特征。视紫红质蓝棒水膜在人类中最光滑,而红锥视蛋白的水膜针对猫和大象的光滑性进行了优化,这与在不同情况下进化的蛋白质物种景观一致。我们还分析了含变色龙,蛇,斑马鱼和金鱼的含色谱家族中的红色视锥蛋白,其中发现了短距离和长距离(BLAST和亲水性)氨基酸(aa)相关性,其值高达97%-99 %。我们使用亲水性氨基酸优化算法来估计人眼可以辨别的最大色深〜Nmax,并获得10〜6

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