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Golgi stress-induced transcriptional changes mediated by MAPK signaling and three ETS transcription factors regulate MCL1 splicing

机译:Golgi应激诱导的MAPK信号传导介导的转录变化和三个ETS转录因子调节MCL1剪接

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摘要

The secretory pathway is a major determinant of cellular homoeostasis. While research into secretory stress signaling has so far mostly focused on the endoplasmic reticulum (ER), emerging data suggest that the Golgi itself serves as an important signaling hub capable of initiating stress responses. To systematically identify novel Golgi stress mediators, we performed a transcriptomic analysis of cells exposed to three different pharmacological compounds known to elicit Golgi fragmentation: brefeldin A, golgicide A, and monensin. Subsequent gene-set enrichment analysis revealed a significant contribution of the ETS family transcription factors ELK1, GABPA/B, and ETS1 to the control of gene expression following compound treatment. Induction of Golgi stress leads to a late activation of the ETS upstream kinases MEK1/2 and ERK1/2, resulting in enhanced ETS factor activity and the transcription of ETS family target genes related to spliceosome function and cell death induction via alternate MCL1 splicing. Further genetic analyses using loss-of-function and gain-of-function experiments suggest that these transcription factors operate in parallel.
机译:分泌途径是细胞同性恋的主要决定因素。虽然研究分泌应力信号传导的研究大多专注于内质网(ER),但新兴数据表明,GOLGI本身用作能够启动应力响应的重要信号传导枢纽。为了系统地识别新型高尔基胁迫介质,我们进行了暴露于三种不同药理化合物的细胞的转录组分析,该化合物已知为引发Golgi碎片:Brefeldin A,咯胆苷A和Monensin。随后的基因设定富集分析显示ETS系列转录因子ELK1,GABPA / B和ETS1对复合处理后基因表达的重大贡献。 Golgi应激的诱导导致ETS上游激酶MEK1 / 2和ERK1 / 2的晚期活化,导致ETS因子活性和ETS系列靶基因的转录通过交替MCL1剪接,ETS系列靶基因与耐抗体组函数和细胞死亡诱导相关的ETS系列靶基因的转录。使用函数丧失和功能性实验的进一步遗传分析表明这些转录因子并行运行。

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