首页> 外文期刊>Journal of Biomolecular Structure and Dynamics >Molecular simulations to determine the chelating mechanisms of various metal ions to the His-tag motif: a preliminary study.
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Molecular simulations to determine the chelating mechanisms of various metal ions to the His-tag motif: a preliminary study.

机译:分子模拟,以确定各种金属离子与His-tag母题的螯合机理:初步研究。

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摘要

In the present study, molecular simulations were performed to investigate the chelating mechanisms of various metal ions to the His-tag motifs with various His residues. The chelation mostly involved the i and i+2 His residues for Ni(2+), Zn(2+), Cu(2+), and Co(2+), while the cooperation of 3 His residues was necessary when Fe(3+) was involved in chelation with His-tags having more than 4 His residues. Metal ion was best fitted into the pocket formed by the imidazole nitrogens while it was about equally located among these nitrogen atoms. His-tag6 was found to have little effect on the structural integrity while the target protein contains more than 68 amino acid residues. Ni(2+) interacted with the imidazole nitrogen of His3 in the beginning of chelation, and then entered into the pocket formed by His3 and His5 at 4 ns during the 10 ns molecular dynamics simulations. The fast chelating process resulted in successful application of IMAC techniques in efficient protein purification.
机译:在本研究中,进行了分子模拟以研究各种金属离子对具有各种His残基的His-tag图案的螯合机理。螯合主要涉及Ni(2 +),Zn(2 +),Cu(2+)和Co(2+)的i和i + 2 His残基,而当Fe( 3+)参与了具有超过4个His残基的His-tag的螯合。金属离子最好装入由咪唑氮形成的口袋中,而金属离子在这些氮原子之间的位置大致相等。发现His-tag6对结构完整性几乎没有影响,而目标蛋白包含超过68个氨基酸残基。在螯合开始时,Ni(2+)与His3的咪唑氮相互作用,然后在10 ns的分子动力学模拟过程中于4 ns进入由His3和His5形成的口袋。快速的螯合过程导致IMAC技术成功应用于有效的蛋白质纯化。

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