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Direct Recruitment of ERK Cascade Components to Inducible Genes Is Regulated by Heterogeneous Nuclear Ribonucleoprotein (hnRNP) K

机译:通过异质核核糖核糖蛋白(HNRNP)K的直接募集ERK级联组分对诱导基因进行调节

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Components of the ERK cascade are recruited to genes, but it remains unknown how they are regulated at these sites. The RNA-binding protein heterogeneous nuclear ribonucleoprotein (hnRNP) K interacts with kinases and is found along genes including the mitogen-inducible early response gene EGR-1. Here, we used chromatin immunoprecipitations to study co-recruitment of hnRNP K and ERK cascade activity along the EGR-1 gene. These measurements revealed that the spatiotemporal binding patterns of ERK cascade transducers (GRB2, SOS, B-Raf, MEK, and ERK) at the EGR-1 locus resemble both hnRNP K and RNA polymerase II (Pol II). Inhibition of EGR-1 transcription with either serum-responsive factor knockdown or 5,6-dichloro-1-β-d-ribofuranosylbenzimidazole altered recruitment of all of the above ERK cascade components along this locus that mirrored the changes in Pol II and hnRNP K profiles. siRNA knockdown of hnRNP K decreased the levels of active MEK and ERK at the EGR-1, changes associated with decreased levels of elongating pre-mRNA and less efficient splicing. The hnRNP K dependence and pattern of ERK cascade activation at the c-MYC locus were different from at EGR-1. Ribonucleoprotein immunoprecipitations revealed that hnRNP K was associated with the EGR-1 but not c-MYC mRNAs. These data suggest a model where Pol II transcription-driven recruitment of hnRNP K along the EGR-1 locus compartmentalizes activation of the ERK cascade at these genes, events that regulate synthesis of mature mRNA.
机译:ERK级联的组件被招募到基因,但它仍然未知在这些网站上的监管。 RNA结合蛋白质异质核核糖核蛋白(HNRNP)K与激酶相互作用,并沿着包括丝脂诱导的早期反应基因EGR-1的基因发现。在这里,我们使用染色质免疫沉淀,研究沿EGR-1基因的HNRNP K和ERK级联活动的共募集。这些测量结果表明,ERK级联换能器(GRB2,SOS,B-RAF,MEK和ERK)的时空结合图案在EGR-1基因座中类似于HNRNP K和RNA聚合酶II(POL II)。抑制EGR-1转录与血清响应因子敲低或5,6-二氯-1-β-D-Ribofuranosyl Benendazole改变了沿着该基因座的所有上述ERK级联组分的募集,反映了Pol II和HNRNP K的变化配置文件。 HNRNP K的siRNA敲低在EGR-1中降低了活性MEK和ERK的水平,与细长前mRNA的伸长率降低和较少有效的剪接相关的变化。 C-Myc基因座在C-Myc基因座的ERK级联激活的HNRNP K依赖性和模式不同于EGR-1。核糖核蛋白免疫沉淀揭示HNRNP K与EGR-1但不是C-MYC MRNA相关。这些数据建议沿着EGR-1基因座的POL II转录驱动HNRNP K的募集的模型,该基因分组在这些基因中激活ERK级联的激活,调节成熟mRNA的合成的事件。

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