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MPLEx: a Robust and Universal Protocol for Single-Sample Integrative Proteomic, Metabolomic, and Lipidomic Analyses

机译:MPLEx:一种用于单样品整合蛋白质组学,代谢组学和脂质学分析的鲁棒通用协议

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Integrative multi-omics analyses can empower more effective investigation and complete understanding of complex biological systems. Despite recent advances in a range of omics analyses, multi-omic measurements of the same sample are still challenging and current methods have not been well evaluated in terms of reproducibility and broad applicability. Here we adapted a solvent-based method, widely applied for extracting lipids and metabolites, to add proteomics to mass spectrometry-based multi-omics measurements. The m etabolite, p rotein, and l ipid ex traction (MPLEx) protocol proved to be robust and applicable to a diverse set of sample types, including cell cultures, microbial communities, and tissues. To illustrate the utility of this protocol, an integrative multi-omics analysis was performed using a lung epithelial cell line infected with Middle East respiratory syndrome coronavirus, which showed the impact of this virus on the host glycolytic pathway and also suggested a role for lipids during infection. The MPLEx method is a simple, fast, and robust protocol that can be applied for integrative multi-omic measurements from diverse sample types (e.g., environmental, in vitro , and clinical). IMPORTANCE In systems biology studies, the integration of multiple omics measurements (i.e., genomics, transcriptomics, proteomics, metabolomics, and lipidomics) has been shown to provide a more complete and informative view of biological pathways. Thus, the prospect of extracting different types of molecules (e.g., DNAs, RNAs, proteins, and metabolites) and performing multiple omics measurements on single samples is very attractive, but such studies are challenging due to the fact that the extraction conditions differ according to the molecule type. Here, we adapted an organic solvent-based extraction method that demonstrated broad applicability and robustness, which enabled comprehensive proteomics, metabolomics, and lipidomics analyses from the same sample. Author Video : An author video summary of this article is available.
机译:集成的多组学分析可以使更有效的研究和对复杂生物系统的完整理解成为可能。尽管最近在一系列的组学分析方面取得了进展,但是同一样品的多组学测量仍然具有挑战性,目前的方法在可重复性和广泛适用性方面尚未得到很好的评估。在这里,我们采用了一种基于溶剂的方法,该方法被广泛应用于提取脂质和代谢物,从而将蛋白质组学添加到基于质谱的多组学测量中。代谢物,蛋白和脂质提取(MPLEx)协议被证明是可靠的,适用于多种样本类型,包括细胞培养物,微生物群落和组织。为了说明此协议的实用性,使用感染了中东呼吸综合征冠状病毒的肺上皮细胞系进行了综合多组学分析,这显示了该病毒对宿主糖酵解途径的影响,并暗示了脂质在感染过程中的作用。感染。 MPLEx方法是一种简单,快速且可靠的方案,可用于来自各种样品类型(例如环境,体外和临床)的综合多组学测量。重要事项在系统生物学研究中,已证明多种组学测量方法(即基因组学,转录组学,蛋白质组学,代谢组学和脂质组学)的集成可提供更完整和更全面的生物学途径信息。因此,提取不同类型的分子(例如DNA,RNA,蛋白质和代谢物)并在单个样品上进行多组学测量的前景非常诱人,但是由于提取条件根据不同的事实,这种研究具有挑战性。分子类型。在这里,我们采用了一种基于有机溶剂的提取方法,该方法具有广泛的适用性和耐用性,可对同一样品进行全面的蛋白质组学,代谢组学和脂质组学分析。作者视频:本文提供了作者视频摘要。

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