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Improving the depth of coverage in membrane proteomic studies through the use of lipid-based protein immobilization technology in parallel with methanol-facilitated solubilisation

机译:通过使用基于脂质的蛋白质固定技术以及甲醇促进的增溶作用,提高了膜蛋白质组学研究的覆盖深度

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摘要

Lipid-based protein immobilization (LPI) technology is a platform recently developed to facilitate shotgun membrane proteomic studies based on a nanotechnology framework. Proteoliposomes are generated from a membrane protein preparation. These proteoliposomes are immobilized onto an LPI chip and then subjected to proteolysis. The proteolytic peptides are then subjected to LC/MS analysis after fractionation by SCX chromatography. The focus of this study was to evaluate how the depth of coverage of the membrane proteome of a particular cell type varied as a function of the sample preparation method used. Human dermal fibroblasts (hDFs) and human bone marrow mesenchymal stem cells (BM-hMSCs) were subjected to membrane proteomic studies using two different sample preparation methods: LPI technology and methanol-facilitated solubilisation. The number of membrane proteins that could be identified from hDFs and BM-hMSCs using LC/MS was greater using LPI technology than it was using methanol-facilitated solubilisation. However, the number of membrane protein identifications that could be made for both hDFs and BM-hMSCs increased by ~50% when both sample preparation methods were used in parallel and the MS/MS data was convolved together. Therefore, LPI technology is a very useful technology for high-throughput shotgun membrane proteomic studies. However, in order to maximize the depth of membrane proteome coverage that can be attained for a given cell type, it is necessary to use multiple sample preparation methods in concert.
机译:基于脂质的蛋白质固定(LPI)技术是最近开发的一个平台,可促进基于纳米技术框架的shot弹枪膜蛋白质组学研究。蛋白脂质体由膜蛋白制剂产生。这些蛋白脂质体被固定在LPI芯片上,然后进行蛋白水解。然后通过SCX色谱分离对蛋白水解肽进行LC / MS分析。这项研究的重点是评估特定细胞类型的膜蛋白质组的覆盖深度如何随所用样品制备方法的变化而变化。使用两种不同的样品制备方法:LPI技术和甲醇促进的增溶作用,对人真皮成纤维细胞(hDFs)和人骨髓间充质干细胞(BM-hMSCs)进行膜蛋白质组学研究。使用LC / MS可以从hDF和BM-hMSC中鉴定出的膜蛋白数量要比使用甲醇促进的增溶剂要多。然而,当同时使用两种样品制备方法并将MS / MS数据进行卷积时,可以对hDFs和BM-hMSCs进行膜蛋白鉴定的数量增加了约50%。因此,LPI技术是用于高通量shot弹枪膜蛋白质组学研究的非常有用的技术。但是,为了使给定细胞类型可以达到的最大膜蛋白质组覆盖深度,必须同时使用多种样品制备方法。

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