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ERK/MAPK Signaling Drives Overexpression of the Rac-GEF, PREX1, in BRAF- and NRAS-Mutant Melanoma

机译:ERK / MAPK信号驱动BRAF和NRAS突变型黑色素瘤中Rac-GEF,PREX1的过表达。

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Recently, we identified that PREX1 overexpression is critical for metastatic but not tumorigenic growth in a mouse model of NRAS-driven melanoma. In addition, a PREX1 gene signature correlated with and was dependent on ERK MAPK activation in human melanoma cell lines. In the current study, the underlying mechanism of PREX1 overexpression in human melanoma was assessed. PREX1 protein levels were increased in melanoma tumor tissues and cell lines compared with benign nevi and normal melanocytes, respectively. Suppression of PREX1 by siRNA impaired invasion but not proliferation in vitro. PREX1-dependent invasion was attributable to PREX1-mediated activation of the small GTPase RAC1 but not the related small GTPase CDC42. Pharmacologic inhibition of ERK signaling reduced PREX1 gene transcription and additionally regulated PREX1 protein stability. This ERK-dependent upregulation of PREX1 in melanoma, due to both increased gene transcription and protein stability, contrasts with the mechanisms identified in breast and prostate cancers, in which PREX1 overexpression was driven by gene amplification and HDAC-mediated gene transcription, respectively. Thus, although PREX1 expression is aberrantly upregulated and regulates RAC1 activity and invasion in these three different tumor types, the mechanisms of its upregulation are distinct and context dependent.
机译:最近,我们发现PREX1过表达对于NRAS驱动的黑色素瘤小鼠模型中的转移性而非致癌性生长至关重要。此外,PREX1基因签名与人类黑素瘤细胞系中的ERK MAPK激活相关,并依赖于此。在当前的研究中,评估了人类黑素瘤中PREX1过表达的潜在机制。与良性痣和正常黑色素细胞相比,黑色素瘤肿瘤组织和细胞系中的PREX1蛋白水平分别升高。 siRNA对PREX1的抑制可削弱其侵袭能力,但在体外则不会增殖。 PREX1依赖的入侵可归因于PREX1介导的小GTPase RAC1的激活,而不是相关的小GTPase CDC42的激活。 ERK信号的药理学抑制作用降低了PREX1基因的转录,并进一步调节了PREX1蛋白的稳定性。黑色素瘤中PREX1的这种ERK依赖性上调,归因于基因转录和蛋白质稳定性的提高,这与乳腺癌和前列腺癌中确定的机制形成对比,在乳腺癌和前列腺癌中,PREX1的过表达分别由基因扩增和HDAC介导的基因转录驱动。因此,尽管在这三种不同的肿瘤类型中PREX1表达异常上调并调节RAC1的活性和侵袭,但其上调的机制却是截然不同的,并且取决于具体情况。

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