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Somatic Hypermutation of the YAP Oncogene in a Human Cutaneous Melanoma

机译:yap oncogene在人类皮肤黑色素瘤中的体细胞高压

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摘要

Melanoma is usually driven by mutations in BRAF or NRAS, which trigger hyperactivation of MAPK signaling. However, MAPK-targeted therapies are not sustainably effective in most patients. Accordingly, characterizing mechanisms that co-operatively drive melanoma progression is key to improving patient outcomes. One possible mechanism is the Hippo signaling pathway, which regulates cancer progression via its central oncoproteins YAP and TAZ, although is thought to be only rarely affected by direct mutation. As YAP hyperactivation occurs in uveal melanoma, we investigated this oncogene in cutaneous melanoma. YAP protein expression was elevated in most benign nevi and primary cutaneous melanomas but present at only very low levels in normal melanocytes. In patient-derived xenografts and melanoma cell lines, we observed variable reliance of cell viability on Hippo pathway signaling that was independent of TAZ activity and also of classical melanoma driver mutations such as BRAF and NRAS. Finally, in genotyping studies of melanoma, we observed the first ever hyperactivating YAP mutations in a human cancer, manifest as seven distinct missense point mutations that caused serine to alanine transpositions. Strikingly, these mutate four serine residues known to be targeted by the Hippo pathway and we show that they lead to hyperactivation of YAP.
机译:黑色素瘤通常由BRAF或NRA中的突变驱动,这触发MAPK信号传导的超动激活。然而,MAPK靶向疗法在大多数患者中都不是可持续的。因此,特征在于共同可操作地驱动黑色素瘤进展的机制是改善患者结果的关键。一种可能的机制是河马信号传导途径,其通过中枢癌蛋白和TAZ调节癌症进展,尽管被认为只受到直接突变的影响。随着YAP血管活化发生在UVEAL黑色素瘤中,我们在皮肤黑色素瘤中调查了这种癌基因。 yap蛋白表达在大多数良性的痣和主要皮肤黑色素瘤中升高,但在正常的黑色细胞中仅存在非常低的水平。在患者衍生的异种移植物和黑色素瘤细胞系中,我们观察到细胞活力对河马途径信号传导的可变依赖性,其独立于TAZ活性以及典型的黑色素瘤驱动突变,例如BRAF和NRAS。最后,在黑色素瘤的基因分型研究中,我们观察了人类癌症中的第一个多动yap突变,表现为七个不同的畸形点突变,导致氨基对丙氨酸转置。尖锐的是,这些突变了四种已知由河马途径靶向的丝氨酸残基,并且我们表明它们导致yap的血管活化。

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