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Structure-Based Function Prediction of Uncharacterized Protein Using Binding Sites Comparison

机译:基于结合位点比较的未表征蛋白的基于结构的功能预测

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A challenge in structural genomics is prediction of the function of uncharacterized proteins. When proteins cannot be related to other proteins of known activity, identification of function based on sequence or structural homology is impossible and in such cases it would be useful to assess structurally conserved binding sites in connection with the protein's function. In this paper, we propose the function of a protein of unknown activity, the Tm1631 protein from Thermotoga maritima, by comparing its predicted binding site to a library containing thousands of candidate structures. The comparison revealed numerous similarities with nucleotide binding sites including specifically, a DNA-binding site of endonuclease IV. We constructed a model of this Tm1631 protein with a DNA-ligand from the newly found similar binding site using ProBiS, and validated this model by molecular dynamics. The interactions predicted by the Tm1631-DNA model corresponded to those known to be important in endonuclease IV-DNA complex model and the corresponding binding free energies, calculated from these models were in close agreement. We thus propose that Tm1631 is a DNA binding enzyme with endonuclease activity that recognizes DNA lesions in which at least two consecutive nucleotides are unpaired. Our approach is general, and can be applied to any protein of unknown function. It might also be useful to guide experimental determination of function of uncharacterized proteins.
机译:结构基因组学的挑战是预测未表征蛋白质的功能。当蛋白质不能与具有已知活性的其他蛋白质相关时,就不可能基于序列或结构同源性鉴定功能,在这种情况下,评估与蛋白质功能相关的结构保守的结合位点将很有用。在本文中,我们通过将其预测的结合位点与包含数千个候选结构的文库进行比较,提出了一种未知活性的蛋白Tm1631蛋白的功能。该比较揭示了与核苷酸结合位点的许多相似性,特别是核酸内切酶IV的DNA结合位点。我们使用ProBiS从新发现的类似结合位点构建了具有DNA配体的Tm1631蛋白模型,并通过分子动力学验证了该模型。 Tm1631-DNA模型预测的相互作用与已知在核酸内切酶IV-DNA复合物模型中重要的相互作用相对应,从这些模型计算出的相应结合自由能非常一致。因此,我们提出Tm1631是具有核酸内切酶活性的DNA结合酶,可识别其中至少两个连续核苷酸不成对的DNA损伤。我们的方法是通用的,可以应用于功能未知的任何蛋白质。指导实验性鉴定未表征蛋白质的功能可能也很有用。

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