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首页> 外文期刊>Molecular & cellular proteomics: MCP >The Matrisome: In Silico Definition and In Vivo Characterization by Proteomics of Normal and Tumor Extracellular Matrices
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The Matrisome: In Silico Definition and In Vivo Characterization by Proteomics of Normal and Tumor Extracellular Matrices

机译:基质:通过正常和肿瘤细胞外基质的蛋白质组学进行计算机定义和体内表征

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摘要

The extracellular matrix (ECM) is a complex meshwork of cross-linked proteins providing both biophysical and biochemical cues that are important regulators of cell proliferation, survival, differentiation, and migration. We present here a proteomic strategy developed to characterize the in vivo ECM composition of normal tissues and tumors using enrichment of protein extracts for ECM components and subsequent analysis by mass spectrometry. In parallel, we have developed a bioinformatic approach to predict the in silico "matrisome" defined as the ensemble of ECM proteins and associated factors. We report the characterization of the extracellular matrices of murine lung and colon, each comprising more than 100 ECM proteins and each presenting a characteristic signature. Moreover, using human tumor xenografts in mice, we show that both tumor cells and stromal cells contribute to the production of the tumor matrix and that tumors of differing metastatic potential differ in both the tumor- and the stroma-derived ECM components. The strategy we describe and illustrate here can be broadly applied and, to facilitate application of these methods by others, we provide resources including laboratory protocols, inventories of ECM domains and proteins, and instructions for bioinformatically deriving the human and mouse matrisome.
机译:细胞外基质(ECM)是交联蛋白的复杂网状结构,提供了生物物理和生化线索,它们是细胞增殖,存活,分化和迁移的重要调节剂。我们在这里提出了一种蛋白质组学策略,通过使用蛋白质提取物丰富ECM成分并随后通过质谱分析来表征正常组织和肿瘤的体内ECM组成。同时,我们已经开发出一种生物信息学方法来预测定义为ECM蛋白和相关因子集合的计算机“基质”。我们报告了鼠肺和结肠的细胞外基质的表征,每种基质都包含100多个ECM蛋白,并且每个都表现出特征性的特征。此外,在小鼠中使用人类肿瘤异种移植物,我们显示肿瘤细胞和基质细胞均有助于肿瘤基质的产生,并且不同的转移潜力的肿瘤在肿瘤和基质衍生的ECM成分中均不同。我们在此处描述和说明的策略可以广泛应用,并且为了促进其他方法的应用,我们提供的资源包括实验室规程,ECM域和蛋白质清单以及生物信息学衍生人和小鼠基质的说明。

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