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β-TrCP-mediated ubiquitination and degradation of liver-enriched transcription factor CREB-H

机译:β-TrCP介导的肝富集转录因子CREB-H的泛素化和降解

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摘要

CREB-H is an endoplasmic reticulum-resident bZIP transcription factor which critically regulates lipid homeostasis and gluconeogenesis in the liver. CREB-H is proteolytically activated by regulated intramembrane proteolysis to generate a C-terminally truncated form known as CREB-H-ΔTC, which translocates to the nucleus to activate target gene expression. CREB-H-ΔTC is a fast turnover protein but the mechanism governing its destruction was not well understood. In this study, we report on β-TrCP-dependent ubiquitination and proteasomal degradation of CREB-H-ΔTC. The degradation of CREB-H-ΔTC was mediated by lysine 48-linked polyubiquitination and could be inhibited by proteasome inhibitor. CREB-H-ΔTC physically interacted with β-TrCP, a substrate recognition subunit of the SCFβ-TrCP E3 ubiquitin ligase. Forced expression of β-TrCP increased the polyubiquitination and decreased the stability of CREB-H-ΔTC, whereas knockdown of β-TrCP had the opposite effect. An evolutionarily conserved sequence, SDSGIS, was identified in CREB-H-ΔTC, which functioned as the β-TrCP-binding motif. CREB-H-ΔTC lacking this motif was stabilized and resistant to β-TrCP-induced polyubiquitination. This motif was a phosphodegron and its phosphorylation was required for β-TrCP recognition. Furthermore, two inhibitory phosphorylation sites close to the phosphodegron were identified. Taken together, our work revealed a new intracellular signaling pathway that controls ubiquitination and degradation of the active form of CREB-H transcription factor.
机译:CREB-H是一种内质网驻留bZIP转录因子,可严格调节肝脏中脂质的稳态和糖异生。 CREB-H通过调节性膜内蛋白水解作用被蛋白水解激活,以生成称为CREB-H-ΔTC的C端截短形式,该蛋白易位至细胞核以激活靶基因表达。 CREB-H-ΔTC是一种快速更新的蛋白质,但对其破坏机理尚不十分了解。在这项研究中,我们报告了CREB-H-ΔTC的β-TrCP依赖性泛素化和蛋白酶体降解。 CREB-H-ΔTC的降解是由赖氨酸48连接的多聚泛素介导的,并且可以被蛋白酶体抑制剂抑制。 CREB-H-ΔTC与β-TrCP相互作用,β-TrCP是SCF β-TrCP E3泛素连接酶的底物识别亚基。强制性表达β-TrCP增加了多泛素化,降低了CREB-H-ΔTC的稳定性,而敲低β-TrCP具有相反的作用。在CREB-H-ΔTC中鉴定了进化保守序列SDSGIS,其充当β-TrCP结合基序。缺少该基序的CREB-H-ΔTC稳定并抵抗β-TrCP诱导的多聚泛素化。该基序是磷酸腺嘌呤,β-TrCP识别需要其磷酸化。此外,鉴定了接近磷酸脱氢核糖核酸的两个抑制性磷酸化位点。综上所述,我们的工作揭示了一种新的细胞内信号传导途径,该途径可控制CREB-H转录因子活性形式的泛素化和降解。

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