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The VHSE-Based Prediction of Proteasomal Cleavage Sites

机译:基于VHSE的蛋白酶体切割位点预测

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摘要

Prediction of proteasomal cleavage sites has been a focus of computational biology. Up to date, the predictive methods are mostly based on nonlinear classifiers and variables with little physicochemical meanings. In this paper, the physicochemical properties of 14 residues both upstream and downstream of a cleavage site are characterized by VHSE (principal component score vector of hydrophobic, steric, and electronic properties) descriptors. Then, the resulting VHSE descriptors are employed to construct prediction models by support vector machine (SVM). For both in vivo and in vitro datasets, the performance of VHSE-based method is comparatively better than that of the well-known PAProC, MAPPP, and NetChop methods. The results reveal that the hydrophobic property of 10 residues both upstream and downstream of the cleavage site is a dominant factor affecting in vivo and in vitro cleavage specificities, followed by residue’s electronic and steric properties. Furthermore, the difference in hydrophobic potential between residues flanking the cleavage site is proposed to favor substrate cleavages. Overall, the interpretable VHSE-based method provides a preferable way to predict proteasomal cleavage sites.
机译:蛋白酶体切割位点的预测一直是计算生物学的重点。迄今为止,预测方法主要基于非线性分类器和几乎没有理化意义的变量。在本文中,通过VHSE(疏水,空间和电子性质的主要成分评分矢量)描述符来表征裂解位点上游和下游的14个残基的理化性质。然后,通过支持向量机(SVM)将所得的VHSE描述符用于构建预测模型。对于体内和体外数据集,基于VHSE的方法的性能相对优于众所周知的PAProC,MAPPP和NetChop方法。结果表明,裂解位点上游和下游的10个残基的疏水性是影响体内和体外裂解特异性的主要因素,其次是残基的电子和空间特性。此外,提出了在裂解位点两侧的残基之间疏水电位的差异,以利于底物裂解。总体而言,基于VHSE的可解释方法提供了预测蛋白酶体切割位点的优选方法。

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