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Prediction of protein domain boundaries from sequence alone

机译:仅根据序列预测蛋白质结构域边界

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摘要

We present here a simple approach to identify domain boundaries in proteins of an unknown three-dimensional structure. Our method is based on the hypothesis that a high-side chain entropy of a region in a protein chain must be compensated by a high-residue interaction energy within the region, which could correlate with a well-structured part of the globule, that is, with a domain unit. For protein domains, this means that the domain boundary is conditioned by amino acid residues with a small value of side chain entropy, which correlates with the side chain size. On the one hand, relatively high Ala and Gly content on the domain boundary results in high conformational entropy of the backbone chain between the domains. On the other hand, the presence of Pro residues leads to the formation of hinges for a relative orientation of domains. The method was applied to 646 proteins with two contiguous domains extracted from the SCOP database with a success rate of 63%. We also report the prediction of domain boundaries for CASP5 targets obtained with the same method.
机译:我们在这里提出一种简单的方法来识别未知的三维结构的蛋白质中的域边界。我们的方法基于以下假设:蛋白质链中某个区域的高侧链熵必须由该区域内的高残基相互作用能补偿,该能量可能与小球结构良好的部分相关,即,具有域单元。对于蛋白质结构域,这意味着结构域边界受具有较小侧链熵值(与侧链大小相关)的氨基酸残基限制。一方面,结构域边界上相对较高的Ala和Gly含量导致结构域之间主链的构象熵较高。另一方面,Pro残基的存在导致针对结构域的相对取向的铰链的形成。该方法应用于从SCOP数据库中提取的具有两个连续域的646种蛋白质,成功率为63%。我们还报告了通过相同方法获得的CASP5目标的域边界的预测。

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