The relationship between experimentally validated intracellular human protein stability and the features of its solvent accessible surface.

Pub Date : 2015-01-01 DOI:10.1504/ijdmb.2015.066338
Xiaofeng Song, Yan Jing, Ping Han
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Abstract

Protein degradation is critical for most cellular processes, and investigating the degradation signals in the sequence and structure is beneficial for analysing the protein stability. In this paper, we investigated in depth the intrinsic factors affecting the protein degradation based on the sequence and structure features. The results indicated that there are more hydrophobic residues on the surface of short-lived protein than the long-lived protein. The secondary structure such as coil tends to be on the surface of short-lived protein. There are more serine phosphorylation sites on the short-lived protein surface, and there is higher possibility for the short-lived proteins to start the degradation by signal of PEST motif than long-lived proteins. We also found that almost all of N terminal residues are exposed to be on the surface; therefore, the specific features of the solvent accessible surface residues are the key factors affecting intracellular protein stability.

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实验验证的细胞内人蛋白稳定性与其溶剂可及表面特征的关系。
蛋白质降解是大多数细胞过程的关键,研究蛋白质降解信号的序列和结构有助于分析蛋白质的稳定性。本文从蛋白质的序列和结构特征出发,深入研究了影响蛋白质降解的内在因素。结果表明,短寿命蛋白表面的疏水残基多于长寿命蛋白。二级结构如螺旋结构往往位于短寿命蛋白质的表面。短寿命蛋白表面丝氨酸磷酸化位点较多,与长寿命蛋白相比,短寿命蛋白通过PEST基序信号启动降解的可能性较大。我们还发现几乎所有的N末端残基都暴露在表面;因此,溶剂可及表面残基的特性是影响细胞内蛋白质稳定性的关键因素。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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