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Overcoming Key Technological Challenges in Using Mass Spectrometry for Mapping Cell Surfaces in Tissues*

机译:克服使用质谱法绘制组织中细胞表面的关键技术挑战*

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摘要

Plasma membranes form a critical biological interface between the inside of every cell and its external environment. Their roles in multiple key cellular functions make them important drug targets. However the protein composition of plasma membranes in general is poorly defined as the inherent properties of lipid embedded proteins, such as their hydrophobicity, low abundance, poor solubility and resistance to digestion and extraction makes them difficult to isolate, solubilize, and identify on a large scale by traditional mass spectrometry methods. Here we describe some of the significant advances that have occurred over the past ten years to address these challenges including: i) the development of new and improved membrane isolation techniques via either subfractionation or direct labeling and isolation of plasma membranes from cells and tissues; ii) modification of mass spectrometry methods to adapt to the hydrophobic nature of membrane proteins and peptides; iii) improvements to digestion protocols to compensate for the shortage of trypsin cleavage sites in lipid-embedded proteins, particularly multi-spanning proteins, and iv) the development of numerous bioinformatics tools which allow not only the identification and quantification of proteins, but also the prediction of membrane protein topology, membrane post-translational modifications and subcellular localization. This review emphasis the importance and difficulty of defining cells in proper patho- and physiological context to maintain the in vivo reality. We focus on how key technological challenges associated with the isolation and identification of cell surface proteins in tissues using mass spectrometry are being addressed in order to identify and quantify a comprehensive plasma membrane for drug and target discovery efforts.
机译:质膜在每个细胞内部与其外部环境之间形成至关重要的生物学界面。它们在多种关键细胞功能中的作用使其成为重要的药物靶标。然而,通常将质膜的蛋白质组成定义为脂质嵌入的蛋白质的固有特性,例如疏水性,低丰度,不良的溶解性以及对消化和提取的抵抗力,这使得它们很难分离,溶解和鉴定。通过传统的质谱方法进行定标。在这里,我们描述了为解决这些挑战而在过去十年中取得的一些重大进展,其中包括:i)通过亚分离或直接标记和从细胞和组织中分离质膜的新的和改进的膜分离技术的发展; ii)改进质谱方法以适应膜蛋白和肽的疏水性; iii)改进消化方案以补偿脂质包埋的蛋白质(尤其是跨跨蛋白质)中胰蛋白酶切割位点的短缺,并且iv)开发了许多生物信息学工具,这些工具不仅可以鉴定和定量蛋白质,还可以膜蛋白拓扑,膜翻译后修饰和亚细胞定位的预测。这篇综述强调了在适当的病理和生理背景下定义细胞以维持体内现实的重要性和难度。我们专注于如何解决与使用质谱法分离和鉴定组织中细胞表面蛋白相关的关键技术挑战,以鉴定和量化用于药物和靶标发现工作的全面质膜。

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