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PNAS Plus: BRAF/MAPK and GSK3 signaling converges to control MITF nuclear export

机译:PNAS Plus:BRAF / MAPK和GSK3信号融合以控制MITF核输出

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摘要

The close integration of the MAPK, PI3K, and WNT signaling pathways underpins much of development and is deregulated in cancer. In principle, combinatorial posttranslational modification of key lineage-specific transcription factors would be an effective means to integrate critical signaling events. Understanding how this might be achieved is central to deciphering the impact of microenvironmental cues in development and disease. The microphthalmia-associated transcription factor MITF plays a crucial role in the development of melanocytes, the retinal pigment epithelium, osteoclasts, and mast cells and acts as a lineage survival oncogene in melanoma. MITF coordinates survival, differentiation, cell-cycle progression, cell migration, metabolism, and lysosome biogenesis. However, how the activity of this key transcription factor is controlled remains poorly understood. Here, we show that GSK3, downstream from both the PI3K and Wnt pathways, and BRAF/MAPK signaling converges to control MITF nuclear export. Phosphorylation of the melanocyte MITF-M isoform in response to BRAF/MAPK signaling primes for phosphorylation by GSK3, a kinase inhibited by both PI3K and Wnt signaling. Dual phosphorylation, but not monophosphorylation, then promotes MITF nuclear export by activating a previously unrecognized hydrophobic export signal. Nonmelanocyte MITF isoforms exhibit poor regulation by MAPK signaling, but instead their export is controlled by mTOR. We uncover here an unanticipated mode of MITF regulation that integrates the output of key developmental and cancer-associated signaling pathways to gate MITF flux through the import–export cycle. The results have significant implications for our understanding of melanoma progression and stem cell renewal.
机译:MAPK,PI3K和WNT信号通路的紧密整合支撑了许多发展,并且在癌症中被放松调节。原则上,关键谱系特异性转录因子的组合翻译后修饰将是整合关键信号事件的有效手段。理解如何实现这一点对于破译微环境线索对发育和疾病的影响至关重要。小眼症相关转录因子MITF在黑素细胞,视网膜色素上皮,破骨细胞和肥大细胞的发育中起关键作用,并在黑素瘤中作为谱系存活癌基因。 MITF协调生存,分化,细胞周期进程,细胞迁移,代谢和溶酶体生物发生。但是,如何控制此关键转录因子的活性仍然知之甚少。在这里,我们显示PI3K和Wnt通路下游的GSK3和BRAF / MAPK信号传导收敛以控制MITF核出口。黑色素细胞MITF-M同工型的磷酸化响应于BRAF / MAPK信号转导引发的GSK3磷酸化,这是一种同时受到PI3K和Wnt信号转导抑制的激酶。然后,双重磷酸化而不是单磷酸化通过激活先前无法识别的疏水输出信号来促进MITF核输出。非黑素细胞MITF亚型通过MAPK信号传导表现出较差的调控,但其输出受mTOR控制。我们在这里揭示了MITF调控的一种出乎意料的模式,该模式整合了关键的发育和癌症相关信号通路的输出,以控制进出口周期中的MITF通量。该结果对我们对黑素瘤进展和干细胞更新的理解具有重要意义。

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