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蛋白质等电点的模态分布反映的是氨基酸性质而非序列进化。

The modal distribution of protein isoelectric points reflects amino acid properties rather than sequence evolution.

作者信息

Weiller Georg F, Caraux Gilles, Sylvester Nicole

机构信息

ARC Centre of Excellence for Integrative Legume Research, Australian National University, Canberra, Australia.

出版信息

Proteomics. 2004 Apr;4(4):943-9. doi: 10.1002/pmic.200200648.

Abstract

Two-dimensional gel electrophoresis, a routine application in proteomics, separates proteins according to their molecular mass (M(r)) and isoelectric point (pI). As the genomic sequences for more and more organisms are determined, the M(r) and pI of all their proteins can be estimated computationally. The examination of several of these theoretical proteome plots has revealed a multimodal pI distribution, however, no conclusive explanation for this unusual distribution has so far been presented. We examined the pI distribution of 115 fully sequenced genomes and observed that the modal distribution does not reflect phylogeny or sequence evolution, but rather the chemical properties of amino acids. We provide a statistical explanation of why the observed distributions of pI values are multimodal.

摘要

二维凝胶电泳是蛋白质组学中的常规应用,它根据蛋白质的分子量(M(r))和等电点(pI)对蛋白质进行分离。随着越来越多生物体的基因组序列被测定,其所有蛋白质的M(r)和pI都可以通过计算进行估算。然而,对其中一些理论蛋白质组图谱的研究揭示了一种多峰pI分布,但迄今为止,对于这种异常分布尚未给出确凿的解释。我们研究了115个全序列基因组的pI分布,发现模式分布并不反映系统发育或序列进化,而是反映了氨基酸的化学性质。我们对观察到的pI值分布为何是多峰的提供了一个统计学解释。

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