阐明脂质相互作用在稳定膜蛋白 KcsA 中的作用

IF 3.2 3区 生物学 Q2 BIOPHYSICS
Biophysical journal Pub Date : 2024-09-17 Epub Date: 2024-07-18 DOI:10.1016/j.bpj.2024.07.019
Pei Qiao, Melanie T Odenkirk, Weiyi Zheng, Yuchen Wang, Jinhui Chen, Wenhao Xu, Erin S Baker
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引用次数: 0

摘要

脂质结合对钾通道 KcsA 功能的重要影响已通过出色的研究得到验证。然而,脂质与 KcsA 之间的具体相互作用,如每种结合事件的结合参数,尚未完全阐明。在本研究中,我们采用原生质谱法研究了脂质与 KcsA 的结合及其对通道的影响。即使在没有脂质结合的情况下,KcsA 的四聚体结构也保持完好。然而,E71A 突变体的亚单位结构依赖于紧密结合的共聚脂质,该突变体在低 pH 值下持续开放。此外,我们还观察到,当通道在没有渗透阳离子 K+ 的情况下处于关闭/失活状态时,脂质在高 pH 值下与 KcsA 的结合很弱。这种微弱的相互作用可能会促进 K+ 离子的结合,从而使通道过渡到静止的关闭/打开状态。有趣的是,当通道处于打开/失活状态时,阴离子脂质和齐聚物脂质在低 pH 值下都能与 KcsA 紧密结合。我们还研究了 KcsA 与来自大肠杆菌和 S. lividans 的天然脂质的结合模式。有趣的是,与 S. lividans 的脂质相比,大肠杆菌的脂质表现出更强的结合亲和力。在来自 S. lividans 的天然脂质中,游离脂肪酸和三酰甘油与 KcsA 的结合最为紧密,而天然 PA 脂质则未发现任何可检测到的结合事件。这些发现表明,KcsA 的天然宿主 S. lividans 中的脂质结合模式值得进一步研究。总之,我们的研究揭示了脂质在稳定 KcsA 方面的作用,并强调了特定脂质-蛋白质相互作用在调节其构象状态方面的重要性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Elucidating the role of lipid interactions in stabilizing the membrane protein KcsA.

The significant effects of lipid binding on the functionality of potassium channel KcsA have been validated by brilliant studies. However, the specific interactions between lipids and KcsA, such as binding parameters for each binding event, have not been fully elucidated. In this study, we employed native mass spectrometry to investigate the binding of lipids to KcsA and their effects on the channel. The tetrameric structure of KcsA remains intact even in the absence of lipid binding. However, the subunit architecture of the E71A mutant, which is constantly open at low pH, relies on tightly associated copurified lipids. Furthermore, we observed that lipids exhibit weak binding to KcsA at high pH when the channel is at a closed/inactivation state in the absence of permeant cation K+. This feeble interaction potentially facilitates the association of K+ ions, leading to the transition of the channel to a resting closed/open state. Interestingly, both anionic and zwitterionic lipids strongly bind to KcsA at low pH when the channel is in an open/inactivation state. We also investigated the binding patterns of KcsA with natural lipids derived from E. coli and Streptomyces lividans. Interestingly, lipids from E. coli exhibited much stronger binding affinity compared to the lipids from S. lividans. Among the natural lipids from S. lividans, free fatty acids and triacylglycerols demonstrated the tightest binding to KcsA, whereas no detectable binding events were observed with natural phosphatidic acid lipids. These findings suggest that the lipid association pattern in S. lividans, the natural host for KcsA, warrants further investigation. In conclusion, our study sheds light on the role of lipids in stabilizing KcsA and highlights the importance of specific lipid-protein interactions in modulating its conformational states.

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来源期刊
Biophysical journal
Biophysical journal 生物-生物物理
CiteScore
6.10
自引率
5.90%
发文量
3090
审稿时长
2 months
期刊介绍: BJ publishes original articles, letters, and perspectives on important problems in modern biophysics. The papers should be written so as to be of interest to a broad community of biophysicists. BJ welcomes experimental studies that employ quantitative physical approaches for the study of biological systems, including or spanning scales from molecule to whole organism. Experimental studies of a purely descriptive or phenomenological nature, with no theoretical or mechanistic underpinning, are not appropriate for publication in BJ. Theoretical studies should offer new insights into the understanding ofexperimental results or suggest new experimentally testable hypotheses. Articles reporting significant methodological or technological advances, which have potential to open new areas of biophysical investigation, are also suitable for publication in BJ. Papers describing improvements in accuracy or speed of existing methods or extra detail within methods described previously are not suitable for BJ.
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