Interdisciplinary Research Center HALOmem, Charles Tanford Protein Center, Institute for Biochemistry and Biotechnology, Martin Luther University Halle-Wittenberg, Halle, Germany.
Interdisciplinary Research Center HALOmem, Charles Tanford Protein Center, Institute for Biochemistry and Biotechnology, Martin Luther University Halle-Wittenberg, Halle, Germany.
Chem Phys Lipids. 2019 Jul;221:145-157. doi: 10.1016/j.chemphyslip.2019.04.001. Epub 2019 Apr 3.
Biological membranes are selectively permeable barriers important for cell organization and compartmentalization. Their organisation strongly depends on the lipids that constitute the lipid bilayer as well as the proteins that reside in the membrane. Unravelling the organisation of biological membranes is therefore of great importance to understand cellular function driven by integral and peripheral membrane proteins. Recent developments in mass spectrometry made it a powerful tool contributing to our present-day understanding of membrane composition and organisation. The two main deliverables of mass spectrometry are (i) the identification and quantification of the membrane components, and (ii) the analysis of their structural arrangements. In this review article, we first briefly discuss the aspects of membrane organization that are accessible through mass spectrometry. We then provide detailed insights into the various mass spectrometric strategies which help identifying lipids from membranes or membrane protein assemblies, unravelling the lipid binding modes in membrane proteins and uncovering their structural roles. We further discuss the growing interest in membrane mimetics providing membrane proteins with a native-like lipid environment for structural and functional studies and the possibilities of mass spectrometry to contribute in these experiments.
生物膜是具有选择性通透性的屏障,对于细胞的组织和区室化至关重要。它们的结构强烈依赖于构成脂质双层的脂质以及存在于膜中的蛋白质。因此,揭示生物膜的组织对于理解由整合膜蛋白和外周膜蛋白驱动的细胞功能非常重要。质谱技术的最新进展使其成为一种强大的工具,有助于我们目前对膜组成和组织的理解。质谱技术的两个主要成果是:(i) 鉴定和定量膜成分,以及 (ii) 分析它们的结构排列。在这篇综述文章中,我们首先简要讨论了可通过质谱技术获得的膜组织的各个方面。然后,我们深入探讨了各种质谱策略,这些策略有助于从膜或膜蛋白组装体中鉴定脂质,揭示膜蛋白中的脂质结合模式及其结构作用。我们还进一步讨论了对膜类似物的日益关注,这些类似物为膜蛋白提供了类似于天然的脂质环境,用于结构和功能研究,以及质谱技术在这些实验中可能发挥的作用。