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首页> 外文期刊>Chembiochem: A European journal of chemical biology >Domain Reorientation and Induced Fit upon RNA Binding: Solution Structure and Dynamics of Ribosomal Protein L11 from Thermotoga maritima
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Domain Reorientation and Induced Fit upon RNA Binding: Solution Structure and Dynamics of Ribosomal Protein L11 from Thermotoga maritima

机译:域重定向和诱导适合RNA结合:溶液结构和动力学的来自滨海嗜热菌的核糖体蛋白L11。

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摘要

L11,a protein of the large ribosomal subunit,binds to a highly conserved domain of 23S rRNA and mediates ribosomal GTPase activity.Its C-terminal domain is the main determinant for rRNA binding,whereas its N-terminal domain plays only a limited role in RNA binding.The N-terminal domain is thought to be involved in interactions with elongation and release factors as well as with the antibiotics thiostrepton and micrococin.This report presents the NMR solution structure of the full-length L11 protein from the thermophilic eubacterium Thermotoga maritima In its free form.The structure is based on a large number of orienta-tional restraints derived from residual dipolar couplings in addition to conventional NOE-based restraints.The solution structure of L11 demonstrates that,in contrast to many other multidomain RNA-binding proteins,the relative orientation of the two domains is well defined.This is shown both by heteronudear ~(15)N-relaxa-tion and residual dipolar-coupling data.Comparison of this NMR structure with the X-ray structure of RNA-bound L11,reveals that binding not only induces a rigidification of a flexible loop in the C-terminal domain,but also a sizeable reorientation of the N-ter-mlnal domain.The domain orientation in free L11 shows limited similarity to that of ribosome-bound L11 in complex with elongation factor,EF-G.
机译:L11是一种较大的核糖体亚基蛋白,与23S rRNA的高度保守结构域结合并介导核糖体GTPase活性。它的C末端结构域是rRNA结合的主要决定因素,而其N末端结构域在RRNA中的作用有限RNA结合.N末端结构域被认为与伸长和释放因子以及抗生素thiostrepton和micrococin相互作用。本报告介绍了嗜热真细菌嗜热菌Thermotoga maritima的全长L11蛋白的NMR溶液结构。以其自由形式存在。该结构基于大量的源自残余偶极偶合的定向约束,以及基于常规NOE的约束。L11的溶液结构表明,与许多其他多域RNA结合蛋白相反,这两个域的相对取向得到了很好的定义。异核〜(15)N弛豫和残余偶极耦合数据均表明了这一点。 NMR结构与RNA结合的L11的X射线结构的结合揭示了结合不仅诱导C末端结构域中柔性环的刚性化,而且还引起N末端结构域的相当大的重新定向。在具有延伸因子EF-G的复合物中,游离L11中的结构域取向显示出与核糖体结合的L11的相似性有限。

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