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首页> 外文期刊>Physical chemistry chemical physics: PCCP >Maltose-binding protein effectively stabilizes the partially closed conformation of the ATP-binding cassette transporter MalFGK(2)
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Maltose-binding protein effectively stabilizes the partially closed conformation of the ATP-binding cassette transporter MalFGK(2)

机译:麦芽糖结合蛋白有效地稳定了ATP结合盒式磁带转运蛋白的部分闭合构象MALFGK(2)

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摘要

Maltose transporter MalFGK(2) is a type-I importer in the ATP-binding cassette (ABC) transporter superfamily. Upon the binding of its periplasmic binding protein, MalE, the ATPase activity of MalFGK(2) can be greatly enhanced. Crystal structures of the MalFGK(2)-MalE-maltose complex in a so-called "pretranslocation'' ("pre-T'') state with a partially closed conformation suggest that the formation of this MalE-stabilized intermediate state is a key step leading to the outward-facing catalytic state. On the contrary, crosslinking and fluorescence studies suggest that ATP binding alone is sufficient to promote the outward-facing catalytic state, thereby doubting the role of MalE binding. To clarify the role of MalE binding and to gain deeper understanding of the molecular mechanisms of MalFGK(2), we calculated the free energy surfaces (FESs) related to the lateral motion in the presence and absence of MalE using atomistic metadynamics simulations. The results showed that, in the absence of MalE, laterally closing motion was energetically forbidden but, upon MalE binding, more closed conformations similar to the pre-T state become more stable. The significant effect of MalE binding on the free energy landscapes was in agreement with crystallographic studies and confirmed the important role of MalE in stabilizing the pre-T state. Our simulations also revealed that the allosteric effect of MalE stimulation originates from the MalE-binding-promoted vertical motion between MalF and MalG cores, which was further supported by MD simulation of the MalE-independent mutant MalF500.
机译:麦芽糖转运蛋白MALFGK(2)是ATP绑定盒(ABC)运输器超家族的I型进口商。在其周质结合蛋白的结合后,MALFGK(2)的ATP酶活性可以大大提高。 MALFGK(2) - MALE-麦芽糖复合物的晶体结构在具有部分闭合构象的所谓的“预翻斗机”(“PR-T'')状态表明,这种雄性稳定的中间状态的形成是关键导致面向外观的催化状态的步骤。相反,交联和荧光研究表明,单独的ATP结合足以促进外观的催化状态,从而怀疑雄性结合的作用。为了澄清雄性结合的作用,并更深入地了解MALFGK的分子机制(2),我们计算了使用原子的MEADADAMICS模拟在存在和不存在的情况下与横向运动相关的自由能表面(FES)。结果表明,在没有男性的情况下,横向闭合运动在高度禁止的情况下,但是,在雄性结合时,与PR-T状态类似的更闭合构象变得更稳定。男性对自由能景观的显着效果与晶体研究一致,并确认了男性在稳定前态的重要作用。我们的模拟还揭示了雄性刺激的变构效果来自马夫和马尔格核之间的雄性结合促进的垂直运动,该MD模拟MATF500的MD模拟进一步支持。

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  • 作者单位

    Fudan Univ Shanghai Key Lab Mol Catalysis &

    Innovat Mat Dept Chem Shanghai Peoples R China;

    Hong Kong Univ Sci &

    Technol Dept Chem Inst Adv Study Kowloon Hong Kong Peoples R China;

    King Abdullah Univ Sci &

    Technol Comp Elect &

    Math Sci &

    Engn Div Thuwal Saudi Arabia;

    Hong Kong Univ Sci &

    Technol Dept Chem Inst Adv Study Kowloon Hong Kong Peoples R China;

    Fudan Univ Shanghai Key Lab Mol Catalysis &

    Innovat Mat Dept Chem Shanghai Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 物理学 ; 化学 ;
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