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Structural model for the multisubunit Type IC restriction-modification DNA methyltransferase M.EcoR124I in complex with DNA

机译:与DNA复合的多亚基IC型限制性修饰DNA甲基转移酶M.EcoR124I的结构模型

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摘要

Recent publication of crystal structures for the putative DNA-binding subunits (HsdS) of the functionally uncharacterized Type I restriction-modification (R-M) enzymes MjaXIP and MgeORF438 have provided a convenient structural template for analysis of the more extensively characterized members of this interesting family of multisubunit molecular motors. Here, we present a structural model of the Type IC M.EcoR124I DNA methyltransferase (MTase), comprising the HsdS subunit, two HsdM subunits, the cofactor AdoMet and the substrate DNA molecule. The structure was obtained by docking models of individual subunits generated by fold-recognition and comparative modelling, followed by optimization of inter-subunit contacts by energy minimization. The model of M.EcoR124I has allowed identification of a number of functionally important residues that appear to be involved in DNA-binding. In addition, we have mapped onto the model the location of several new mutations of the hsdS gene of M.EcoR124I that were produced by misincorporation mutagenesis within the central conserved region of hsdS, we have mapped all previously identified DNA-binding mutants of TRD2 and produced a detailed analysis of the location of surface-modifiable lysines. The model structure, together with location of the mutant residues, provides a better background on which to study protein-protein and protein-DNA interactions in Type I R-M systems.
机译:功能性I型限制性修饰(RM)酶MjaXIP和MgeORF438的假定DNA结合亚基(HsdS)晶体结构的最新出版物为分析该有趣家族的更广泛表征的成员提供了方便的结构模板多亚基分子马达。在这里,我们介绍了IC型M.EcoR124I DNA甲基转移酶(MTase)的结构模型,包括HsdS亚基,两个HsdM亚基,辅因子AdoMet和底物DNA分子。通过折叠识别和比较建模生成的单个亚基的模型对接,然后通过能量最小化优化亚基间的接触来获得结构。 M.EcoR124I模型允许鉴定似乎与DNA结合有关的许多功能重要的残基。此外,我们已经在模型上定位了M.EcoR124I的hsdS基因的几个新突变的位置,这些突变是由于在hsdS的中心保守区内发生错误掺入诱变而产生的,我们已经绘制了所有先前鉴定的TRD2和DNA结合突变体。对表面可修饰赖氨酸的位置进行了详细分析。模型结构以及突变残基的位置,为研究I型R-M系统中蛋白质-蛋白质和蛋白质-DNA相互作用提供了更好的背景。

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