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在低温下大肠杆菌中膜β桶蛋白的表达:耶尔森氏菌 OmpF 孔蛋白包涵体的结构。

Expression of membrane beta-barrel protein in E. coli at low temperatures: Structure of Yersinia pseudotuberculosis OmpF porin inclusion bodies.

机构信息

G.B. Elyakov Pacific Institute of Bioorganic Chemistry, Far-Eastern Branch of the Russian Academy of Sciences, Prospekt 100-let Vladivostoku 159, 690022 Vladivostok, Russia.

G.B. Elyakov Pacific Institute of Bioorganic Chemistry, Far-Eastern Branch of the Russian Academy of Sciences, Prospekt 100-let Vladivostoku 159, 690022 Vladivostok, Russia.

出版信息

Biochim Biophys Acta Biomembr. 2022 Sep 1;1864(9):183971. doi: 10.1016/j.bbamem.2022.183971. Epub 2022 May 25.

Abstract

The recombinant OmpF porin of Yersinia pseudotuberculosis as a model of transmembrane protein of the β-barrel structural family was used to study low growth temperature effect on the structure of the produced inclusion bodies (IBs). This porin showed a very low expression level in E. coli at a growth temperature below optimal 37 °C. The introduction of a N-terminal hexahistidine tag into the mature porin molecule significantly increased the biosynthesis of the protein at low cultivation temperatures. The recombinant His-tagged porin (rOmpF-His) was expressed in E. coli at 30 and 18 °C as inclusion bodies (IB-30 and IB-18). The properties and structural organization of IBs, as well as the structure of rOmpF-His solubilized from the IBs with urea and SDS, were studied using turbidimetry, electron microscopy, dynamic light scattering, optical spectroscopy, and amyloid-specific dyes. IB-18, in comparison with IB-30, has a higher solubility in denaturants, suggesting a difference between IBs in the conformation of the associated polypeptide chains. The spectroscopic analysis revealed that rOmpF-His IBs have a high content of secondary structure with a tertiary-structure elements, including a native-like conformation, the proportion of which in IB-18 is higher than in IB-30. Solubilization of the porin from IBs is accompanied by a modification of its secondary structure. The studied IBs also contain amyloid-like structures. The results obtained in this study expand our knowledge of the structural organization of IBs formed by proteins of different structural classes and also have a contribution into the new approaches development of producing functionally active recombinant membrane proteins.

摘要

类炭疽耶尔森氏菌的重组 OmpF 孔蛋白作为β桶结构家族跨膜蛋白的模型,用于研究低生长温度对所产生包涵体 (IB) 结构的影响。这种孔蛋白在低于最佳 37°C 的生长温度下,在大肠杆菌中的表达水平非常低。在成熟孔蛋白分子的 N 端引入六组氨酸标签,可显著提高在低培养温度下蛋白质的生物合成。重组 His 标记的孔蛋白 (rOmpF-His) 在 30 和 18°C 下作为包涵体 (IB-30 和 IB-18) 在大肠杆菌中表达。使用浊度法、电子显微镜、动态光散射、光学光谱和淀粉样蛋白特异性染料研究了 IB 的特性和结构组织,以及用尿素和 SDS 从 IB 中溶解的 rOmpF-His 的结构。与 IB-30 相比,IB-18 在变性剂中的溶解度更高,这表明 IB 中相关多肽链的构象存在差异。光谱分析表明,rOmpF-His IB 具有较高含量的二级结构和三级结构元件,包括类似天然的构象,其在 IB-18 中的比例高于 IB-30。从 IB 中溶解孔蛋白伴随着其二级结构的修饰。所研究的 IB 还含有类似淀粉样的结构。本研究的结果扩展了我们对不同结构类别蛋白质形成的 IB 结构组织的认识,也为开发生产功能活跃的重组膜蛋白的新方法做出了贡献。

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