Lipid Landscapes: Vibrational Spectroscopy for Decoding Membrane Complexity.

IF 11.7 1区 化学 Q1 CHEMISTRY, PHYSICAL
Xiaobing Chen, Ziareena A Al-Mualem, Carlos R Baiz
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引用次数: 0

Abstract

Cell membranes are incredibly complex environments containing hundreds of components. Despite substantial advances in the past decade, fundamental questions related to lipid-lipid interactions and heterogeneity persist. This review explores the complexity of lipid membranes, showcasing recent advances in vibrational spectroscopy to characterize the structure, dynamics, and interactions at the membrane interface. We include an overview of modern techniques such as surface-enhanced infrared spectroscopy as a steady-state technique with single-bilayer sensitivity, two-dimensional sum-frequency generation spectroscopy, and two-dimensional infrared spectroscopy to measure time-evolving structures and dynamics with femtosecond time resolution. Furthermore, we discuss the potential of multiscale molecular dynamics (MD) simulations, focusing on recently developed simulation algorithms, which have emerged as a powerful approach to interpret complex spectra. We highlight the ongoing challenges in studying heterogeneous environments in multicomponent membranes via current vibrational spectroscopic techniques and MD simulations. Overall, this review provides an up-to-date comprehensive overview of the powerful combination of vibrational spectroscopy and simulations, which has great potential to illuminate lipid-lipid, lipid-protein, and lipid-water interactions in the intricate conformational landscape of cell membranes.

脂质景观:用于解码膜复杂性的振动光谱学。
细胞膜是一种极其复杂的环境,包含数百种成分。尽管在过去十年中取得了重大进展,但与脂质-脂质相互作用和异质性有关的基本问题依然存在。本综述探讨了脂膜的复杂性,展示了振动光谱学在表征膜界面的结构、动力学和相互作用方面的最新进展。我们概述了现代技术,如作为具有单层灵敏度的稳态技术的表面增强红外光谱法、二维和频发生光谱法以及二维红外光谱法,以飞秒时间分辨率测量随时间演变的结构和动力学。此外,我们还讨论了多尺度分子动力学(MD)模拟的潜力,重点介绍了最近开发的模拟算法,这些算法已成为解释复杂光谱的有力方法。我们强调了当前通过振动光谱技术和 MD 模拟研究多组分膜中异质环境所面临的挑战。总之,这篇综述全面概述了振动光谱和模拟的最新强大组合,它在阐明细胞膜复杂构象景观中的脂质-脂质、脂质-蛋白质和脂质-水相互作用方面具有巨大潜力。物理化学年刊》第 75 卷的最终在线出版日期预计为 2024 年 4 月。修订后的预计日期请参见 http://www.annualreviews.org/page/journal/pubdates。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
28.00
自引率
0.00%
发文量
21
期刊介绍: The Annual Review of Physical Chemistry has been published since 1950 and is a comprehensive resource for significant advancements in the field. It encompasses various sub-disciplines such as biophysical chemistry, chemical kinetics, colloids, electrochemistry, geochemistry and cosmochemistry, chemistry of the atmosphere and climate, laser chemistry and ultrafast processes, the liquid state, magnetic resonance, physical organic chemistry, polymers and macromolecules, and others.
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