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首页> 外文期刊>Journal of molecular recognition: JMR >Molecular dynamics simulation on the allosteric analysis of the c-di-GMP class I riboswitch induced by ligand binding
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Molecular dynamics simulation on the allosteric analysis of the c-di-GMP class I riboswitch induced by ligand binding

机译:配体结合诱导的C-DI-GMP类I riboswitch的分析性分析的分子动力学模拟

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摘要

Riboswitches are RNA molecules that regulate gene expression using conformation change, affected by binding of small molecule ligands. Although a number of ligand-bound aptamer complex structures have been solved, it is important to know ligand-free conformations of the aptamers in order to understand the mechanism of specific binding by ligands. In this paper, we use dynamics simulations on a series of models to characterize the ligand-free and ligand-bound aptamer domain of the c-di-GMP class I (GEMM-I) riboswitch. The results revealed that the ligand-free aptamer has a stable state with a folded P2 and P3 helix, an unfolded P1 helix and open binding pocket. The first Mg ions binding to the aptamer is structurally favorable for the successive c-di-GMP binding. The P1 helix forms when c-di-GMP is successive bound. Three key junctions J1/2, J2/3 and J1/3 in the GEMM-I riboswitch contributing to the formation of P1 helix have been found. The binding of the c-di-GMP ligand to the GEMM-I riboswitch induces the riboswitch's regulation through the direct allosteric communication network in GEMM-I riboswitch from the c-di-GMP binding sites in the J1/2 and J1/3 junctions to the P1 helix, the indirect ones from those in the J2/3 and P2 communicating to P1 helix via the J1/2 and J1/3 media.
机译:Riboswitches是使用锥形变化改变调节基因表达的RNA分子,其通过小分子配体的结合影响。尽管已经解决了许多配体束的适体复合物结构,但重要的是要知道适体的无配体的构象,以便理解配体特异性结合的机制。在本文中,我们在一系列模型上使用动力学模拟,以表征C-Di-GMP类I(Gemm-I)Riboswitch的配体和配体键合的域。结果表明,无配体的适体具有稳定的状态,其具有折叠的P2和P3螺旋,展开的P1螺旋和开口装订口袋。第一个与适体结合的Mg离子在结构上有利于连续的C-Di-GMP结合。当C-Di-GMP是连续界限时的P1螺旋形式。已经发现了三个关键结合J1 / 2,J2 / 3和J1 / 3促成了形成P1螺旋的核糖。 C-Di-GMP配体与Jemm-1核糖开关的结合通过J100-GMP结合位点在J1 / 2和J1 / 3连接点中的C-Di-GMP结合位点诱导核糖场所的调节对于P1 Helix,通过J1 / 2和J1 / 3媒体,来自J2 / 3和P2中的间接组的间接组。

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