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Screening differentially expressed proteins from co-cultured hematopoietic cells and bone marrow-derived stromal cells by quantitative proteomics (SILAC) method

机译:通过定量蛋白质组学(SILAC)方法从共培养的造血细胞和骨髓源性基质细胞中筛选差异表达的蛋白质

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Bone marrow stromal cells protect hematopoietic cells and provide drug resistance by delivering bunch of variable proteins. Thus, alterations of protein expression are typically associated with cell–cell signal transduction and regulation of cellular functions. Co-culture models of bone marrow stromal cells and hematopoietic cells are often used in studies of their crosstalk. Studies of altered protein expression initiated by stromal cell/hematopoietic cell interactions are an important new trend in microenvironmental research. There has been no report to date of global quantitative proteomics analysis of crosstalk between hematopoietic cells and stromal cells. In this study, we analyzed quantitative proteomes in a co-culture system of stromal HS5 cells and hematopoietic KG1a cells, and simultaneously tracked differentially expressed proteins in two types of cells before and after co-culture by stable isotope labeling by amino acids in cell culture (SILAC) method. We have shown that in co-cultured KG1a, 40 proteins (including CKAP4, LMNA, and SERPINB2) were upregulated and 64 proteins (including CD44, CD99, and NCAM1) were downregulated relative to KG1a alone. We utilized IPA analysis to discover that the NOD-like receptor signaling pathway was upregulated, whereas platelet activation was downregulated in co-cultured KG1a cells. Furthermore, 95 proteins (including LCP1, ARHGAP4, and UNCX) were upregulated and 209 proteins (including CAPG, FLNC, and MAP4) were downregulated in co-cultured HS5 relative to HS5 alone. The tight junction pathway was downregulated and glycolysis/gluconeogenesis pathway was dysfunctional in co-cultured HS5. Most importantly, the significantly differentially expressed proteins can also be confirmed using different co-cultured cell lines. Altogether, we recommend such quantitative proteomics approach for the studies of the hematopoietic–stroma cross-talk, differentially expressed proteins and related signaling pathways identification. The differentially expressed proteins identified from this current SILAC method will provide a useful basis for ongoing studies of crosstalk between stromal cells and hematopoietic cells in co-culture systems. All these result suggested our ongoing studies can focus on the mechanisms underlying CKAP4 increase and CD44 decrease in co-cultured hematopoietic cells, and the increase of LCP1 and decrease of CAPG in co-cultured stromal cell. The proteomic profiles from the KG1a/stromal cell co-culture system give new molecular insights into the roles of these cells in MDS pathophysiology and related bone disease.
机译:骨髓基质细胞保护造血细胞并通过递送可变蛋白束来提供耐药性。因此,蛋白质表达的改变通常与细胞信号转导和细胞功能调节有关。骨髓基质细胞和造血细胞的共培养模型通常用于研究其串扰。由基质细胞/造血细胞相互作用引发的蛋白质表达改变的研究是微环境研究中的重要新趋势。迄今为止,尚无关于造血细胞与基质细胞之间串扰的全球定量蛋白质组学分析的报道。在这项研究中,我们分析了间质HS5细胞和造血KG1a细胞共培养系统中的定量蛋白质组,并同时通过细胞培养物中氨基酸的稳定同位素标记,同时跟踪了共培养前后两种细胞中差异表达的蛋白质。 (SILAC)方法。我们已经显示,在共培养的KG1a中,相对于单独的KG1a,有40种蛋白质(包括CKAP4,LMNA和SERPINB2)被上调,而64种蛋白质(包括CD44,CD99和NCAM1)被下调。我们利用IPA分析发现,在共培养的KG1a细胞中,NOD样受体信号通路被上调,而血小板活化被下调。此外,相对于单独的HS5,共培养的HS5中有95种蛋白(包括LCP1,ARHGAP4和UNCX)被上调,而209种蛋白(包括CAPG,FLNC和MAP4)被下调。共培养的HS5中紧密连接途径被下调,糖酵解/糖异生途径失调。最重要的是,也可以使用不同的共培养细胞系来确认差异显着表达的蛋白质。总之,我们建议使用这种定量蛋白质组学方法来研究造血-基质相互作用,差异表达的蛋白质以及相关的信号通路鉴定。从目前的SILAC方法鉴定出的差异表达蛋白将为正在进行的共培养系统中基质细胞与造血细胞之间的串扰研究提供有用的基础。所有这些结果表明,我们正在进行的研究可以集中在共培养的造血细胞中CKAP4升高和CD44降低的机制,以及共培养的基质细胞中LCP1的升高和CAPG的降低。 KG1a /基质细胞共培养系统的蛋白质组学概况为这些细胞在MDS病理生理学和相关骨病中的作用提供了新的分子见解。

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