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首页> 外文期刊>Chemical Physics: A Journal Devoted to Experimental and Theoretical Research Involving Problems of Both a Chemical and Physical Nature >Structural consequences of chromophore formation and exploration of conserved lid residues amongst naturally occurring fluorescent proteins
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Structural consequences of chromophore formation and exploration of conserved lid residues amongst naturally occurring fluorescent proteins

机译:生色团形成的结构后果以及在天然存在的荧光蛋白中探索保守的盖残基

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摘要

Computational methods were used to generate the lowest energy conformations of the immature precyclized forms of the 28 naturally occurring GFP-like proteins deposited in the pdb. In all 28 GFP-like proteins, the beta-barrel contracts upon chromophore formation and becomes more rigid. Our prior analysis of over 260 distinct naturally occurring GFP-like proteins revealed that most of the conserved residues are located in the top and bottom of the barrel in the turns between the b-sheets (Ong et al. 2011) [1]. Structural analyses, molecular dynamics simulations and the Anisotropic Network Model were used to explore the role of these conserved lid residues as possible folding nuclei. Our results are internally consistent and show that the conserved residues in the top and bottom lids undergo relatively less translational movement than other lid residues, and a number of these residues may play an important role as hinges or folding nuclei in the fluorescent proteins.
机译:计算方法被用于生成沉积在pdb中的28种天然存在的GFP样蛋白的未成熟预环化形式的最低能量构象。在所有28种GFP样蛋白中,β桶在生色团形成时会收缩并变得更坚硬。我们先前对260多种不同的天然GFP样蛋白的分析表明,大多数保守残基位于b片之间的转折处位于桶的顶部和底部(Ong等,2011)[1]。使用结构分析,分子动力学模拟和各向异性网络模型来探讨这些保守的盖残基作为可能折叠核的作用。我们的结果在内部是一致的,并且表明顶盖和底盖中的保守残基比其他盖残基经历相对较少的翻译运动,并且这些残基中的许多可能在荧光蛋白中起铰链或折叠核的作用。

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