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首页> 外文期刊>Russian journal of bioorganic chemistry >Crystal Structure of the pH-Dependent Green Fluorescent Protein WasCFP with a Tryptophan-Based Chromophore at an Extremely Low pH of 2.0
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Crystal Structure of the pH-Dependent Green Fluorescent Protein WasCFP with a Tryptophan-Based Chromophore at an Extremely Low pH of 2.0

机译:pH依赖性绿色荧光蛋白的晶体结构与色氨酸的发色团,极低pH值为2.0

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摘要

The green fluorescent protein WasCFP with a tryptophan-based chromophore (Thr65-Trp66- Gly67) exhibits considerable pH-dependent changes of spectral properties related to the reversible processes of tryptophan ionization and protonation. The crystal structure of WasCFP at pH 10.0, 8.0, and 5.5 was determined in our earlier studies. The spatial structure of WasCFP at an extremely low pH of 2.0 has been determined by X-ray diffraction with a resolution of 1.3 angstrom in the present study. Synchronous changes in the conformation of amino acid residue side chains in the environment of the chromophore and the related changes in the local hydrogen bond network involving the chromophore were shown to occur at sequential pH changes from 10.0 to 2.0. A quantum chemical study of the effect of interactions between the chromophore and the key amino acid residues from its immediate environment has been performed.
机译:具有基于色氨酸的发色团的绿色荧光蛋白(THR65-TRP66- GLY67)表现出与色氨酸电离和质子化的可逆过程相关的相当大的pH依赖性变化。 在我们早期的研究中确定了pH1.0,8.0,8.0和5.5的WASCFP的晶体结构。 通过在本研究中的分辨率为1.3埃的X射线衍射来确定在2.0的极低pH下的WASCFP的空间结构。 在发色团环境中氨基酸残基侧链的同步变化以及涉及发色团的局部氢键网络中的相关变化被显示为在10.0至2.0的顺序pH变化下发生。 已经进行了发色团与关键氨基酸残基之间的相互作用效果的量子化学研究。

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