首页> 外文期刊>Journal of Biomolecular Structure and Dynamics >Insights into protein - DNA interactions, stability and allosteric communications: a computational study of mutSalpha-DNA recognition complexes.
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Insights into protein - DNA interactions, stability and allosteric communications: a computational study of mutSalpha-DNA recognition complexes.

机译:洞察蛋白质 - DNA相互作用,稳定性和变构通信:对蛋白质核肉DNA识别复合物的计算研究。

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DNA mismatch repair proteins (MMR) maintain genetic stability by recognizing and repairing mismatched bases and insertion/deletion loops mistakenly incorporated during DNA replication, and initiate cellular response to certain types of DNA damage. Loss of MMR in mammalian cells has been linked to resistance to certain DNA damaging chemotherapeutic agents, as well as to increase risk of cancer. Mismatch repair pathway is considered to involve the concerted action of at least 20 proteins. The most abundant MMR mismatch-binding factor in eukaryotes, MutSalpha, recognizes and initiates the repair of base-base mismatches and small insertion/deletion. We performed molecular dynamics simulations on mismatched and damaged MutSalpha-DNA complexes. A comprehensive DNA binding site analysis of relevant conformations shows that MutSalpha proteins recognize the mismatched and platinum cross-linked DNA substrates in significantly different modes. Distinctive conformational changes associated with MutSalpha binding to mismatched and damaged DNA have been identified and they provide insight into the involvement of MMR proteins in DNA-repair and DNA-damage pathways. Stability and allosteric interactions at the heterodimer interface associated with the mismatch and damage recognition step allow for prediction of key residues in MMR cancer-causing mutations. A rigorous hydrogen bonding analysis for ADP molecules at the ATPase binding sites is also presented. Due to extended number of known MMR cancer causing mutations among the residues proved to make specific contacts with ADP molecules, recommendations for further studies on similar mutagenic effects were made.
机译:DNA错配修复蛋白(MMR)通过识别和修复不匹配的基础和插入/缺失环,并在DNA复制期间掺入的插入/缺失环,并引发细胞反应对某些类型的DNA损伤。哺乳动物细胞中MMR的丧失已与对某些DNA损伤化学治疗剂的抗性有关,以及增加癌症的风险。不匹配修复途径被认为涉及至少20个蛋白的齐心并论。最丰富的MMR MMR不匹配系数在真核生物,MUTSALPHA,识别和启动基础碱不匹配和小插入/删除的修复。我们对不匹配和损坏的Mutsalpha-DNA复合物进行了分子动力学模拟。相关构象的综合DNA结合位点分析表明,Mutsalpha蛋白质以显着不同的方式识别错配和铂交联的DNA基材。已经鉴定了与Mutsalpha结合与错配和受损DNA的独特构象变化,并对MMR蛋白的介绍了解DNA修复和DNA损伤途径。与错配和损伤识别步骤相关的异二聚体界面处的稳定性和变构相互作用允许预测MMR癌导致突变中的关键残留物。还介绍了ATP酶结合位点的ADP分子的严格氢键分析。由于已知的MMR癌的延长数量,导致残留物中的突变被证明与ADP分子进行特异性接触,提出了进一步研究类似诱变效应的研究。

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