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LAiR介导的快速且高度稳定的膜重构可用于研究生理状态下整合膜蛋白的功能。

Rapid and Highly Stable Membrane Reconstitution by LAiR Enables the Study of Physiological Integral Membrane Protein Functions.

作者信息

Godoy-Hernandez Albert, Asseri Amer H, Purugganan Aiden J, Jiko Chimari, de Ram Carol, Lill Holger, Pabst Martin, Mitsuoka Kaoru, Gerle Christoph, Bald Dirk, McMillan Duncan G G

机构信息

Department of Biotechnology, Delft University of Technology, 2628 CD Delft, The Netherlands.

Biochemistry Department, Faculty of Science, King Abdulaziz University, Jeddah 21589, Saudi Arabia.

出版信息

ACS Cent Sci. 2023 Feb 22;9(3):494-507. doi: 10.1021/acscentsci.2c01170. eCollection 2023 Mar 22.

Abstract

Functional reintegration into lipid environments represents a major challenge for investigation of integral membrane proteins (IMPs). Here, we report a new approach, termed LMNG Auto-insertion Reintegration (LAiR), for reintegration of IMPs into lipid bilayers within minutes. The resulting proteoliposomes displayed an unprecedented capability to maintain proton gradients and long-term stability. LAiR allowed for monitoring catalysis of a membrane-bound, physiologically relevant polyisoprenoid quinone substrate by cytochromes (c ) and (c) under control of the proton motive force. LAiR also facilitated bulk-phase detection and physiological assessment of the "proton leak" in c , a controversial catalytic state that previously was only approachable at the single-molecule level. LAiR maintained the multisubunit integrity and higher-order oligomeric states of the delicate mammalian F-ATP synthase. Given that LAiR can be applied to both liposomes and planar membrane bilayers and is compatible with IMPs and lipids from prokaryotic and eukaryotic sources, we anticipate LAiR to be applied broadly across basic research, pharmaceutical applications, and biotechnology.

摘要

功能上重新整合到脂质环境中是研究整合膜蛋白(IMP)的一项重大挑战。在此,我们报告了一种新方法,称为LMNG自动插入再整合(LAiR),可在数分钟内将IMP重新整合到脂质双层中。所得的蛋白脂质体展现出前所未有的维持质子梯度和长期稳定性的能力。LAiR能够在质子动力的控制下监测细胞色素c和c对膜结合的、生理相关的聚异戊二烯醌底物的催化作用。LAiR还促进了对c中“质子泄漏”的体相检测和生理评估,“质子泄漏”是一种有争议的催化状态,此前仅在单分子水平上可实现。LAiR维持了精细的哺乳动物F-ATP合酶的多亚基完整性和高阶寡聚状态。鉴于LAiR可应用于脂质体和平面膜双层,并且与来自原核和真核来源的IMP和脂质兼容,我们预计LAiR将广泛应用于基础研究、药物应用和生物技术领域。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e3de/10037447/084db37497d9/oc2c01170_0003.jpg

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