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Proteomic signatures corresponding to the SS18/SSX fusion gene in synovial sarcoma

机译:滑膜肉瘤中与SS18 / SSX融合基因相对应的蛋白质组学特征

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摘要

Synovial sarcoma (SS) is a malignant soft tissue lesion and most commonly arises in young adults. Chromosomal translocation t(X;18)(p11;q11) results in the formation of SS18/SSX by gene fusion of the SS18 gene on chromosome 18 to either SSX1, SSX2, or SSX4 gene located on chromosome X, which is detected in more than 95% of SSs. Although multiple lines of evidence suggest that the SS18/SSX fusion is the oncogene in this tumor, the protein expression profiles associated with SS18/SSX have yet to be elucidated. In this study, we conducted proteomic studies using SS18/SSX knockdown in three SS cell lines to identify the regulated proteins associated with SS18/SSX in SS. Isobaric tags for relative and absolute quantitation (i-TRAQ) analyses identified approximate 1700–2,000 proteins regulated by the SS18/SSX fusion in each SS cell line. We also analyzed the three profiles to identify proteins that were similarly altered in all 3 cell lines and found 17 consistently upregulated and 18 consistently downregulated proteins, including TAGLN and ACTN4. In addition, network analyses identified several critical pathways including RUNX2 and SMARCA4. RUNX2 and SMARCA4 had the highest ranking in these identified pathways. In addition, we found that expression of TAGLN inhibited cell viability in SS cell lines. Our data suggest that the differentiation and cell growth of SS may be enhanced by the identified proteins induced by SS18/SSX. We believe that the findings obtained in the present functional analyses will help to improve our understanding of the relationship between SS18/SSX and malignant behavior in SS.
机译:滑膜肉瘤(SS)是一种恶性软组织病变,最常见于年轻人。染色体易位t(X; 18)(p11; q11)通过将18号染色体上的SS18基因与位于X染色体上的SSX1,SSX2或SSX4基因进行基因融合而形成SS18 / SSX。超过95%的SS。尽管有多种证据表明SS18 / SSX融合蛋白是该肿瘤的癌基因,但与SS18 / SSX相关的蛋白表达谱尚未阐明。在这项研究中,我们在三个SS细胞系中使用SS18 / SSX组合进行了蛋白质组学研究,以鉴定与SS中的SS18 / SSX相关的调控蛋白。用于相对定量和绝对定量(i-TRAQ)分析的同量异位标签可识别每个SS细胞系中受SS18 / SSX融合调控的大约1700–2,000种蛋白质。我们还分析了这三个图谱,以鉴定在所有3种细胞系中都发生类似变化的蛋白质,并发现17种持续上调的蛋白质和18种持续下调的蛋白质,包括TAGLN和ACTN4。此外,网络分析还确定了几个关键路径,包括RUNX2和SMARCA4。在这些确定的途径中,RUNX2和SMARCA4具有最高的排名。另外,我们发现TAGLN的表达抑制了SS细胞系中的细胞活力。我们的数据表明,SS18 / SSX诱导的鉴定蛋白可以增强SS的分化和细胞生长。我们相信,在本功能分析中获得的发现将有助于增进我们对SS18 / SSX与SS恶性行为之间关系的理解。

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