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首页> 外文期刊>Journal of separation science. >Evaluation of the combinative application of SDS and sodium deoxycholate to the LC-MS-based shotgun analysis of membrane proteomes
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Evaluation of the combinative application of SDS and sodium deoxycholate to the LC-MS-based shotgun analysis of membrane proteomes

机译:SDS和脱氧胆酸钠联合应用在基于LC-MS的膜蛋白质组shot弹枪分析中的评估

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摘要

SDS and sodium deoxycholate (SDC) as two representative detergents have been widely used in LC-MS/MS-based shotgun analysis of membrane proteomes. However, some inherent disadvantages limit their applications such as interference with MS analysis or their weak ability to disrupt membranes. To address this, the combinative application of SDS and SDC was developed and evaluated in our study, which comprehensively used the strong ability of SDS to lyse membranes and solubilize hydrophobic membrane proteins, and the high efficiencies of an optimized acetone precipitation method and SDC in sample clean-up, protein recovery, and redissolution and digestion of precipitated proteins. The comparative study using a rat-liver-membrane-enriched sample showed that, compared with other three commonly used methods including the filter-aided sample preparation strategy, the combinative method not only increased the identified number of total proteins, membrane proteins, and integral membrane proteins by an average of 19.8, 23.9, and 24.8%, respectively, but also led to the identification of the highest number of matching peptides. All these results demonstrate that the method yielded better recovery and reliability in the identification of the proteins especially highly hydrophobic integral membrane proteins than the other three methods, and thereby has more potential in shotgun membrane proteomics.
机译:SDS和脱氧胆酸钠(SDC)作为两种代表性的去污剂已广泛用于基于LC-MS / MS的膜蛋白质组shot弹枪分析。但是,某些固有的缺点限制了它们的应用,例如干扰MS分析或破坏膜的能力较弱。为了解决这个问题,在本研究中开发并评估了SDS和SDC的组合应用,它综合利用SDS的强大能力来溶解膜和溶解疏水膜蛋白,以及高效的丙酮沉淀法和样品中的SDC。清除,蛋白质回收以及沉淀蛋白的再溶解和消化。使用富含鼠肝膜的样品进行的比较研究表明,与其他三种常用方法(包括过滤器辅助样品制备策略)相比,组合方法不仅增加了总蛋白,膜蛋白和整合蛋白的鉴定数量膜蛋白的平均分别分别为19.8、23.9和24.8%,但也导致鉴定出最高数量的匹配肽。所有这些结果表明,与其他三种方法相比,该方法在鉴定蛋白质(尤其是高度疏水的整合膜蛋白)方面具有更好的回收率和可靠性,因此在shot弹枪膜蛋白质组学中具有更大的潜力。

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