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大斯托克斯位移红色荧光蛋白 tKeima 的结构分析。

Structural Analysis of the Large Stokes Shift Red Fluorescent Protein tKeima.

机构信息

College of General Education, Kookmin University, Seoul 02707, Republic of Korea.

Department of Bioengineering, College of Life Science, Dalian Minzu University, Dalian 116600, China.

出版信息

Molecules. 2024 May 30;29(11):2579. doi: 10.3390/molecules29112579.

Abstract

The Keima family comprises large Stokes shift fluorescent proteins that are useful for dual-color fluorescence cross-correlation spectroscopy and multicolor imaging. The tKeima is a tetrameric large Stokes shift fluorescent protein and serves as the ancestor fluorescent protein for both dKeima and mKeima. The spectroscopic properties of tKeima have been previously reported; however, its structural basis and molecular properties have not yet been elucidated. In this study, we present the crystallographic results of the large Stokes shift fluorescent protein tKeima. The purified tKeima protein spontaneously crystallized after purification without further crystallization. The crystal structure of tKeima was determined at 3.0 Å resolution, revealing a β-barrel fold containing the Gln-Tyr-Gly chromophores mainly with cis-conformation. The tetrameric interfaces of tKeima were stabilized by numerous hydrogen bonds and salt-bridge interactions. These key residues distinguish the substituted residues in dKeima and mKeima. The key structure-based residues involved in the tetramer formation of tKeima provide insights into the generation of a new type of monomeric mKeima. This structural analysis expands our knowledge of the Keima family and provides insights into its protein engineering.

摘要

Keima 家族包含大斯托克斯位移荧光蛋白,它们可用于双色荧光相关光谱学和多色成像。tKeima 是一种四聚体大斯托克斯位移荧光蛋白,是 dKeima 和 mKeima 的祖先荧光蛋白。tKeima 的光谱特性以前已经有报道;然而,其结构基础和分子特性尚未阐明。在这项研究中,我们展示了大斯托克斯位移荧光蛋白 tKeima 的晶体学结果。纯化后的 tKeima 蛋白在没有进一步结晶的情况下自发结晶。tKeima 的晶体结构在 3.0 Å 分辨率下确定,揭示了一个 β-桶折叠结构,其中包含主要呈顺式构象的 Gln-Tyr-Gly 生色团。tKeima 的四聚体界面通过大量氢键和盐桥相互作用稳定。这些关键残基区分了 dKeima 和 mKeima 中的取代残基。涉及 tKeima 四聚体形成的关键基于结构的残基为生成新型单体 mKeima 提供了线索。这种结构分析扩展了我们对 Keima 家族的认识,并为其蛋白质工程提供了见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/22a3/11173989/c03d5aff492f/molecules-29-02579-g001.jpg

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