[双胍自抑制和激活过程中N端和c端相互作用的分子动力学]。

Biofizika Pub Date : 2015-05-01
I A Orshanskiy, A V Popinako, O I Volokh, K V Shaitan, O S Sokolova
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引用次数: 0

摘要

利用分子动力学方法,在formin相互作用的中间结构域(DID-DAD)和GTPase Rho-DID结构域(Rho-DID)表面鉴定了一对氨基酸残基,这些氨基酸残基负责formin的自抑制,并控制激活。结果表明,最稳定的相互作用是Glu178残基与Arg248残基之间的离子相互作用,以及Thr175与Phe247之间的疏水相互作用。结果表明,DID结构域与Rho-GTPase之间的相互作用最强。这些相互作用是由Rho中带正电的氨基酸和DID中由两个带负电的氨基酸组成的三联体氨基酸之间的特定三离子相互作用介导的,由一个不带电荷的氨基酸分开。Rho-GTPase和DAD的结合位点部分重叠,但DID上的各种氨基酸参与了与不同结构域的相互作用。我们讨论了激活和失活期间formin结构域可能的构象变化。
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[Molecular Dynamics of N- and C-terminal Interactions during Autoinhibition and Activation of Formin mDial].

With the method of molecular dynamics, pairs of amino acid residues have been identified on the surface of the interacting formin mDial domains: DID-DAD, which are responsible for the autoinhibition of formin, and the GTPase Rho-DID domain, and control activation. It was found that the most stable interactions are ionic interactions between Glu178 residue and Arg248 residue, as well as hydrophobic interactions between Thr175 and Phe247. The strongest interactions proved to be between the DID domain with Rho-GTPase. These interactions are mediated by specific triple ionic interactions between positively charged amino acid in Rho, and a triplet of amino acids in DID, consisting of two negatively charged amino acids, separated by one uncharged. Binding sites for Rho-GTPase and DAD partially overlap, but various amino acids on the DID participate in interactions with different domains. We discuss the possible conformational changes in formin domains during activation and inactivation.

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