首页> 美国卫生研究院文献>International Journal of Molecular Sciences >Dimer Interface Organization is a Main Determinant of Intermonomeric Interactions and Correlates with Evolutionary Relationships of Retroviral and Retroviral-Like Ddi1 and Ddi2 Proteases
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Dimer Interface Organization is a Main Determinant of Intermonomeric Interactions and Correlates with Evolutionary Relationships of Retroviral and Retroviral-Like Ddi1 and Ddi2 Proteases

机译:Dimer接口组织是单体相互作用的主要决定因素并且与逆转录病毒和类似于Ddi1和Ddi2蛋白酶的逆转录病毒的进化关系相关。

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摘要

The life cycles of retroviruses rely on the limited proteolysis catalyzed by the viral protease. Numerous eukaryotic organisms also express endogenously such proteases, which originate from retrotransposons or retroviruses, including DNA damage-inducible 1 and 2 (Ddi1 and Ddi2, respectively) proteins. In this study, we performed a comparative analysis based on the structural data currently available in Protein Data Bank (PDB) and Structural summaries of PDB entries (PDBsum) databases, with a special emphasis on the regions involved in dimerization of retroviral and retroviral-like Ddi proteases. In addition to Ddi1 and Ddi2, at least one member of all seven genera of the family was included in this comparison. We found that the studied retroviral and non-viral proteases show differences in the mode of dimerization and density of intermonomeric contacts, and distribution of the structural characteristics is in agreement with their evolutionary relationships. Multiple sequence and structure alignments revealed that the interactions between the subunits depend mainly on the overall organization of the dimer interface. We think that better understanding of the general and specific features of proteases may support the characterization of retroviral-like proteases.
机译:逆转录病毒的生命周期依赖于病毒蛋白酶催化的有限的蛋白水解。许多真核生物还内源表达这种蛋白酶,这些蛋白酶源于逆转座子或逆转录病毒,包括可诱导DNA损伤的1和2(分别为Ddi1和Ddi2)蛋白。在这项研究中,我们基于蛋白质数据库(PDB)和PDB条目的结构摘要(PDBsum)数据库中当前可用的结构数据进行了比较分析,特别着重于逆转录病毒和类似逆转录病毒的二聚化区域Ddi蛋白酶。除了Ddi1和Ddi2,该家族所有七个属中的至少一个成员也包括在此比较中。我们发现,研究的逆转录病毒和非病毒蛋白酶显示出二聚化模式和单体间接触密度的差异,并且结构特征的分布与其进化关系一致。多个序列和结构比对揭示,亚基之间的相互作用主要取决于二聚体界面的整体组织。我们认为,对蛋白酶的一般和特定特征的更好理解可能支持逆转录病毒样蛋白酶的表征。

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