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Transcription-dependent degradation controls the stability of the SREBP family of transcription factors

机译:转录依赖性降解控制SREBP家族转录因子的稳定性

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Cholesterol metabolism is tightly controlled by members of the sterol regulatory element-binding protein (SREBP) family of transcription factors. Here we demonstrate that the ubiquitination and degradation of SREBPs depend on their transcriptional activity. Mutations in the transactivation or DNA-binding domains of SREBPs inhibit their transcriptional activity and stabilize the proteins. The transcriptional activity and degradation of these mutants are restored when fused to heterologous transactivation or DNA-binding domains. When SREBP1a was fused to the DBD of Gal4, the ubiquitination and degradation of the fusion protein depended on coexpression of a promoter-reporter gene containing Gal4-binding sites. In addition, disruption of the interaction between WT SREBP and endogenous p300/CBP resulted in inhibition of SREBP-dependent transcription and stabilization of SREBP. Chemical inhibitors of transcription reduced the degradation of transcriptionally active SREBP1a, whereas they had no effect on the stability of transcriptionally inactive mutants, demonstrating that transcriptional activation plays an important role in the degradation of SREBPs. Thus, transcription-dependent degradation of SREBP constitutes a feedback mechanism to regulate the expression of genes involved in cholesterol metabolism and may represent a general mechanism to regulate the duration of transcriptional responses.
机译:胆固醇的代谢受到转录因子固醇调节元件结合蛋白(SREBP)家族成员的严格控制。在这里,我们证明SREBPs的泛素化和降解取决于其转录活性。 SREBPs的反式激活或DNA结合结构域中的突变可抑制其转录活性并稳定蛋白质。当与异源反式激活或DNA结合域融合时,这些突变体的转录活性和降解得以恢复。当SREBP1a与Gal4的DBD融合时,融合蛋白的泛素化和降解取决于含Gal4结合位点的启动子-报告基因的共表达。此外,WT SREBP与内源性p300 / CBP之间相互作用的破坏导致SREBP依赖性转录的抑制和SREBP的稳定。化学转录抑制剂可减少转录活性SREBP1a的降解,而它们对转录惰性突变体的稳定性没有影响,表明转录激活在SREBPs降解中起重要作用。因此,SREBP的转录依赖性降解构成调节胆固醇代谢相关基因表达的反馈机制,并且可能代表调节转录反应持续时间的一般机制。

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