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利用体外翻译系统形成并研究 OmpG 或 OmpA 嵌合脂质体的功能。

Formation and function of OmpG or OmpA-incorporated liposomes using an in vitro translation system.

机构信息

Division of Molecular Science, Graduate School of Science and Technology, Gunma University, 1-5-1 Tenjin-cho, Kiryu, Gunma, 376-8515, Japan.

出版信息

Sci Rep. 2022 Feb 11;12(1):2376. doi: 10.1038/s41598-022-06314-4.

Abstract

Outer membrane proteins (OMPs), located on the outer membrane of gram-negative bacteria, have a β-strand structure and form nanopores, which allow passage of ions, sugars, and small molecules. Recently, OMPs have been used as sensing elements to detect biological molecules. OMPs are normally expressed and purified from Escherichia coli (E. coli). Although the cell-free synthesis of OMPs, such as OmpA and OmpG, is achieved in the presence of liposomes and periplasmic chaperones, the amount of OmpA and OmpG incorporated into the nano-sized liposomes is not clear. In this study, after in vitro translation, the incorporation of OmpG into purified nano-sized liposomes with various lipid compositions was investigated. Liposomes containing the synthesized OmpG were purified using a stepwise sucrose density gradient. We report that liposomes prepared with the E. coli lipid extract (PE/PG) had the highest amount of OmpG incorporated compared to liposomes with other lipid compositions, as detected by recording the current across the OmpG containing liposomes using the patch clamp technique. This study reveals some of the requirements for the insertion and refolding of OMPs synthesized by the in vitro translation system into lipid membranes, which plays a role in the biological sensing of various molecules.

摘要

外膜蛋白(OMPs)位于革兰氏阴性菌的外膜上,具有β-折叠结构并形成纳米孔,允许离子、糖和小分子通过。最近,OMPs 已被用作检测生物分子的传感元件。OMPs 通常从大肠杆菌(E. coli)中表达和纯化。尽管在脂质体和周质伴侣的存在下可以实现 OmpA 和 OmpG 等 OMP 的无细胞合成,但不清楚纳米尺寸脂质体中掺入的 OmpA 和 OmpG 的量。在这项研究中,在体外翻译后,研究了各种脂质组成的纯化纳米尺寸脂质体中 OmpG 的掺入情况。用分步蔗糖密度梯度纯化含有合成的 OmpG 的脂质体。我们报告说,与具有其他脂质组成的脂质体相比,用大肠杆菌脂质提取物(PE/PG)制备的脂质体具有最高量的 OmpG 掺入,这是通过使用膜片钳技术记录含有 OmpG 的脂质体的电流来检测到的。这项研究揭示了体外翻译系统合成的 OMPs 插入和重折叠到脂质膜中的一些要求,这在各种分子的生物传感中发挥作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/392d/8837779/d2a839c73de5/41598_2022_6314_Fig1_HTML.jpg

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