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Sumoylation of Notch1 represses its target gene expression during cell stress

机译:Notch1的Sumoylation在细胞应激期间抑制其靶基因表达

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The Notch signaling pathway is a key regulator of stem cells during development, and its deregulated activity is linked to developmental defects and cancer. Transcriptional activation of Notch target genes requires cleavage of the Notch receptor in response to ligand binding, production of the Notch intracellular domain (NICD1), NICD1 migration into the nucleus, and assembly of a transcriptional complex. Post-translational modifications of Notch regulate its trafficking, turnover, and transcriptional activity. Here, we show that NICD1 is modified by small ubiquitin-like modifier (SUMO) in a stress-inducible manner. Sumoylation occurs in the nucleus where NICD1 is sumoylated in the RBPJ-associated molecule (RAM) domain. Although stress and sumoylation enhance nuclear localization of NICD1, its transcriptional activity is attenuated. Molecular modeling indicates that sumoylation can occur within the DNA-bound ternary transcriptional complex, consisting of NICD1, the transcription factor Suppressor of Hairless (CSL), and the co-activator Mastermind-like (MAML) without its disruption. Mechanistically, sumoylation of NICD1 facilitates the recruitment of histone deacetylase 4 (HDAC4) to the Notch transcriptional complex to suppress Notch target gene expression. Stress-induced sumoylation decreases the NICD1-mediated induction of Notch target genes, which was abrogated by expressing a sumoylation-defected mutant in cells and in the developing central nervous system of the chick in vivo. Our findings of the stress-inducible sumoylation of NICD1 reveal a novel context-dependent regulatory mechanism of Notch target gene expression.
机译:凹口信号通路是在发育过程中干细胞的关键调节器,其潜眠症与发育缺陷和癌症相关联。缺口靶基因的转录激活需要响应于配体结合,凹口细胞内结构域(NICD1),NICD1迁移到细胞核中,以及转录复合物的组装而裂解凹口受体。缺口的翻译后修改规范其贩运,营业额和转录活动。在这里,我们表明NICD1由小泛素样修饰符(SUMO)以应力诱导的方式进行修饰。 Sumoylation发生在核中,其中NiCD1与RBPJ相关分子(RAM)结构域相同。虽然应激和平均增强NICD1的核定位,但其转录活动衰减。分子建模表明,SuMoylation可以发生在DNA结合的三元转录复合物中,由NICD1组成,无毛(CSL)的转录因子抑制剂,以及没有其破裂的共激活剂母料样(MAML)。机械地,NICD1的Sublation促进组蛋白脱乙酰酶4(HDAC4)募集到陷波转录复合物中以抑制缺口靶基因表达。应激诱导的Suboylation降低NiCD1介导的缺口靶基因的诱导,其通过在细胞中表达偏离型义型突变体和在体内雏鸡的中央神经系统中表达。我们对NICD1的应激诱导型同年的发现揭示了Notch靶基因表达的新型上下文依赖性调节机制。

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