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Activation of the MAPK Module from Different Spatial Locations Generates Distinct System Outputs

机译:从不同的空间位置激活MAPK模块会产生不同的系统输出

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The Ras/Raf/MEK/ERK (MAPK) pathway directs multiple cell fate decisions within a single cell. How different system outputs are generated is unknown. Here we explore whether activating the MAPK module from different membrane environments can rewire system output. We identify two classes of nanoscale environment within the plasma membrane. The first, which corresponds to nanoclusters occupied by GTP-loaded H-, N- or K-Ras, supports Raf activation and amplifies low Raf kinase input to generate a digital ERKpp output. The second class, which corresponds to nanoclusters occupied by GDP-loaded Ras, cannot activate Raf and therefore does not activate the MAPK module, illustrating how lateral segregation on plasma membrane influences signal output. The MAPK module is activated at the Golgi, but in striking contrast to the plasma membrane, ERKpp output is analog. Different modes of Raf activation precisely correlate with these different ERKpp system outputs. Intriguingly, the Golgi contains two distinct membrane environments that generate ERKpp, but only one is competent to drive PC12 cell differentiation. The MAPK module is not activated from the ER. Taken together these data clearly demonstrate that the different nanoscale environments available to Ras generate distinct circuit configurations for the MAPK module, bestowing cells with a simple mechanism to generate multiple system outputs from a single cascade.
机译:Ras / Raf / MEK / ERK(MAPK)途径指导单个细胞内的多个细胞命运决定。如何产生不同的系统输出是未知的。在这里,我们探讨了从不同膜环境激活MAPK模块是否可以重新连接系统输出。我们确定质膜内的两类纳米级环境。第一个对应于装载GTP的H-,N-或K-Ras所占据的纳米簇,支持Raf激活并放大低Raf激酶输入以产生数字ERKpp输出。第二类对应于由GDP负载的Ras占据的纳米簇,它不能激活Raf,因此不能激活MAPK模块,这说明质膜上的横向偏析如何影响信号输出。 MAPK模块在高尔基体被激活,但是与质膜形成鲜明对比的是,ERKpp输出是模拟的。 Raf激活的不同模式与这些不同的ERKpp系统输出精确相关。有趣的是,高尔基体包含两种产生ERKpp的独特膜环境,但是只有一种能驱动PC12细胞分化。未从ER激活MAPK模块。这些数据加在一起清楚地表明,Ras可用的不同纳米级环境会为MAPK模块生成不同的电路配置,从而使细胞具有一种简单的机制,可以从单个级联生成多个系统输出。

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