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Regulation of mutant TERT by BRAF V600E/MAP kinase pathway through FOS/GABP in human cancer

机译:通过BRAS V600E / MAP激酶途径通过FOS / GABP调控突变型TERT在人类癌症中的作用

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摘要

The unique oncogene duet of coexisting BRAF V600E and TERT promoter mutations are widely found to be a robust genetic background promoting human cancer aggressiveness, but the mechanism is unclear. Here, we demonstrate that the BRAF V600E/MAP kinase pathway phosphorylates and activates FOS, which in turn acts as a transcription factor to bind and activate the GABPB promoter, increasing GABPB expression and driving formation of GABPA-GABPB complex; the latter selectively binds and activates mutant TERT promoter, upregulating TERT expression. Elevated TERT functions as a strong oncoprotein, robustly promoting aggressive behaviors of cancer cells and tumor development. We thus identify a molecular mechanism for the activation of mutant TERT by the BRAF V600E/MAP kinase pathway, in which FOS as a transcriptional factor of GABPB promoter plays a key role in functionally bridging the two oncogenes in cooperatively promoting oncogenesis, providing important cancer biological and clinical implications.
机译:广泛发现共存BRAF V600E和TERT启动子突变的独特致癌基因二重唱是促进人类癌症侵袭性的强大遗传背景,但机制尚不清楚。在这里,我们证明了BRAF V600E / MAP激酶途径可以磷酸化并激活FOS,而FOS则作为转录因子结合并激活GABPB启动子,增加GABPB的表达并驱动GABPA-GABPB复合物的形成。后者选择性结合并激活突变型TERT启动子,从而上调TERT表达。升高的TERT具有很强的癌蛋白功能,可强有力地促进癌细胞的侵袭性行为和肿瘤发展。因此,我们确定了通过BRAF V600E / MAP激酶途径激活突变型TERT的分子机制,其中FOS作为GABPB启动子的转录因子在功能性桥接两个致癌基因中起着关键作用,共同促进肿瘤发生,从而提供了重要的生物学和临床意义。

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