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Cancer mutations and targeted drugs can disrupt dynamic signal encoding by the Ras-Erk pathway

机译:癌症突变和靶向药物可通过Ras-Erk途径破坏动态信号编码

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摘要

The Ras-Erk (extracellular signal-regulated kinase) pathway encodes information in its dynamics; the duration and frequency of Erk activity can specify distinct cell fates. To enable dynamic encoding, temporal information must be accurately transmitted from the plasma membrane to the nucleus. We used optogenetic profiling to show that both oncogenic B-Raf mutations and B-Raf inhibitors can cause corruption of this transmission, so that short pulses of input Ras activity are distorted into abnormally long Erk outputs. These changes can reshape downstream transcription and cell fates, resulting in improper decisions to proliferate. These findings illustrate how altered dynamic signal transmission properties, and not just constitutively increased signaling, can contribute to cell proliferation and perhaps cancer, and how optogenetic profiling can dissect mechanisms of signaling dysfunction in disease.
机译:Ras-Erk(细胞外信号调节激酶)途径在其动态过程中编码信息。 Erk活动的持续时间和频率可以指定不同的细胞命运。为了实现动态编码,必须将时间信息从质膜准确地传输到细胞核。我们使用光遗传学谱分析显示,致癌的B-Raf突变和B-Raf抑制剂均可引起这种传播的破坏,因此输入Ras活动的短脉冲会失真为异常长的Erk输出。这些变化可以重塑下游转录和​​细胞命运,导致增殖决策不正确。这些发现说明,动态信号传输特性的改变,不仅是信号传导的组成性增加,如何可能促进细胞增殖甚至癌症,光遗传学谱分析如何剖析疾病中信号传导障碍的机制。

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