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Integrator orchestrates RAS/ERK1/2 signaling transcriptional programs

机译:Integrator Orchestrate RAS / ERK1 / 2信令转录程序

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摘要

Activating mutations in the mitogen-activated protein kinase (MAPK) cascade, also known as the RAS-MEK-extracellular signal-related kinase (ERK1/2) pathway, are an underlying cause of >70% of human cancers. While great strides have been made toward elucidating the cytoplasmic components of MAPK signaling, the key downstream coactivators that coordinate the transcriptional response have not been fully illustrated. Here, we demonstrate that the MAPK transcriptional response in human cells is funneled through Integrator, an RNA polymerase II-associated complex. Integrator depletion diminishes ERK1/2 transcriptional responsiveness and cellular growth in human cancers harboring activating mutations in MAPK signaling. Pharmacological inhibition of the MAPK pathway abrogates the stimulus-dependent recruitment of Integrator at immediate early genes and their enhancers. Following epidermal growth factor (EGF) stimulation, activated ERK1/2 is recruited to immediate early genes and phosphorylates INTS11, the catalytic subunit of Integrator. Importantly, in contrast to the broad effects of Integrator knockdown on MAPK responsiveness, depletion of a number of critical subunits of the coactivator complex Mediator alters only a few MAPK-responsive genes. Finally, human cancers with activating mutations in the MAPK cascade, rendered resistant to targeted therapies, display diminished growth following depletion of Integrator. We propose Integrator as a crucial transcriptional coactivator in MAPK signaling, which could serve as a downstream therapeutic target for cancer treatment.
机译:激活丝裂原激活的蛋白激酶(MAPK)级联的突变,也称为RAS-Mek-细胞外信号相关激酶(ERK1 / 2)途径,是人类癌症> 70%的潜在原因。虽然已经对阐明MAPK信号传导的细胞质组分进行了大脚,但尚未完全说明协调转录反应的关键下游共觉器。这里,我们证明人体细胞中的MAPK转录响应通过积分剂,RNA聚合酶II相关复合物漏斗。 Integrator Fepletion在Mapk信号传导中涉及患有激活突变的人类癌症的ERK1 / 2转录响应性和细胞生长减少。 Mapk途径的药理抑制废除了Intelatiate早期基因及其增强剂的积分器的刺激依赖性募集。在表皮生长因子(EGF)刺激之后,招募激活的ERK1 / 2以立即的早期基因和磷酸化INTS11,INTS11,积分剂的催化亚基。重要的是,与Integrator敲低对MAPK反应性的广泛影响相反,共用膜复合介质的许多临界亚基的耗尽仅改变了几种MAPK响应基因。最后,具有激活MAPK级联中的激活突变的人类癌症,使靶向疗法具有抗性,在积分器耗尽后显示出生长减弱。我们将Integrator作为MAPK信号传导中的关键转录同学,其可以作为癌症治疗的下游治疗靶标。

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