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Statistical prediction of protein structural localization and functional properties by the analysis of its fragment mass distributions after proteolytic cleavage

机译:通过蛋白水解切割后片段质量分布的分析对蛋白质结构定位和功能特性的统计预测

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摘要

Structural, localization and functional properties of unknown proteins are often being predicted from their primary polypeptide chains using sequence alignment with already characterized proteins and consequent molecular modeling. Here we suggest an approach to predict various structural and structure-associated properties of proteins directly from the mass distributions of their proteolytic cleavage fragments. For amino-acid-specific cleavages, the distributions of fragment masses are determined by the distributions of inter-amino-acid intervals in the protein, that in turn apparently reflect its structural and structure-related features. Large-scale computer simulations revealed that for transmembrane proteins, either α-helical or β -barrel secondary structure could be predicted with about 90% accuracy after thermolysin cleavage. Moreover, 3/4 intrinsically disordered proteins could be correctly distinguished from proteins with fixed three-dimensional structure belonging to all four SCOP structural classes by combining 3–4 different cleavages. Additionally, in some cases the protein cellular localization (cytosolic or membrane-associated) and its host organism (Firmicute or Proteobacteria) could be predicted with around 80% accuracy. In contrast to cytosolic proteins, for membrane-associated proteins exhibiting specific structural conformations, their monotopic or transmembrane localization and functional group (ATP-binding, transporters, sensors and so on) could be also predicted with high accuracy and particular robustness against missing cleavages.
机译:经常使用与已表征蛋白质的序列比对和随后的分子建模,从其初级多肽链预测未知蛋白质的结构,定位和功能特性。在这里,我们建议直接从其蛋白水解裂解片段的质量分布预测蛋白质的各种结构和与结构相关的属性的方法。对于氨基酸特异性切割,片段质量的分布由蛋白质中氨基酸间间隔的分布决定,这显然反映了其结构和与结构相关的特征。大规模的计算机模拟表明,对于跨膜蛋白,在裂解酶后,可以预测90%的准确性的α-螺旋或β-桶二级结构。此外,通过结合3–4个不同的裂解,可以正确地将3/4内在无序的蛋白质与具有固定的三维结构的蛋白质(属于所有四个SCOP结构类别)区分开。另外,在某些情况下,可以预测蛋白质细胞定位(胞质或膜相关)及其宿主生物(Firmicute或Proteobacteria)的准确性约为80%。与胞质蛋白相反,对于具有特定结构构象的膜相关蛋白,也可以以很高的准确度和对缺失的断裂的鲁棒性来预测它们的单峰或跨膜定位和官能团(ATP结合,转运蛋白,传感器等)。

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