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Human Cdc34 and Rad6B Ubiquitin-Conjugating Enzymes Target Repressors of Cyclic AMP-Induced Transcription for Proteolysis

机译:人类的Cdc34和Rad6B泛素结合酶靶向蛋白的环AMP诱导转录的阻遏物。

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摘要

Ubiquitin-mediated proteolysis controls diverse physiological processes in eukaryotes. However, few in vivo targets of the mammalian Cdc34 and Rad6 ubiquitin-conjugating enzymes are known. A yeast-based genetic assay to identify proteins that interact with human Cdc34 resulted in three cDNAs encoding bZIP DNA binding motifs. Two of these interactants are repressors of cyclic AMP (cAMP)-induced transcription: hICERIIγ, a product of the CREM gene, and hATF5, a novel ATF homolog. Transfection assays with mammalian cells demonstrate both hCdc34- and hRad6B-dependent ubiquitin-mediated proteolysis of hICERIIγ and hATF5. This degradation requires an active ubiquitin-conjugating enzyme and results in abrogation of ICERIIγ- and ATF5-mediated repression of cAMP-induced transcription. Consistent with these results, the endogenous ICER protein is elevated in cells which are null for murine Rad6B (mHR6B−/−) or transfected with dominant negative and antisense constructs of human CDC34. Based on the requirement for CREM/ICER and Rad6B proteins in spermatogenesis, we determined expression of Cdc34, Rad6B, CREM/ICER isoforms, and the Skp1–Cullin–F-box ubiquitin protein ligase subunits Cul-1 and Cul-2, which are associated with Cdc34 activity during murine testicular development. Cdc34, Rad6B, and the Cullin proteins are expressed in a developmentally regulated manner, with distinctly different patterns for Cdc34 and the Cullin proteins in germ cells. The Cdc34 and Rad6B proteins are significantly elevated in meiotic and postmeiotic haploid germ cells when chromatin modifications occur. Thus, the stability of specific mammalian transcription factors is the result of complex targeting by multiple ubiquitin-conjugating enzymes and may have an impact on cAMP-inducible gene regulation during both meiotic and mitotic cell cycles.
机译:泛素介导的蛋白水解控制真核生物中的多种生理过程。但是,很少有哺乳动物Cdc34和Rad6泛素结合酶的体内靶标。一种基于酵母的遗传测定方法,用于鉴定与人类Cdc34相互作用的蛋白质,从而产生了三个编码bZIP DNA结合基序的cDNA。这些相互作用剂中的两个是环AMP(cAMP)诱导的转录的阻遏物:CREM基因的产物hICERIIγ和新型ATF同源物hATF5。用哺乳动物细胞进行的转染分析表明hCdc34和hRad6B依赖的泛素介导的hICERIIγ和hATF5的蛋白水解。这种降解需要一种活性的泛素结合酶,并导致废除ICERIIγ和ATF5介导的cAMP诱导的转录抑制。与这些结果一致,在鼠Rad6B(mHR6B -/-)无效的细胞中,或用人类CDC34的显性负和反义构建体转染的细胞中,内源性ICER蛋白升高。根据精子发生过程中对CREM / ICER和Rad6B蛋白的需求,我们确定了Cdc34,Rad6B,CREM / ICER亚型以及Skp1-Cullin-F-box泛素蛋白连接酶亚基Cul-1和Cul-2的表达。与小鼠睾丸发育过程中Cdc34活性有关。 Cdc34,Rad6B和Cullin蛋白以发育受调控的方式表达,生殖细胞中Cdc34和Cullin蛋白的模式明显不同。当发生染色质修饰时,Cdc34和Rad6B蛋白在减数分裂和减数分裂后的单倍体生殖细胞中显着升高。因此,特定哺乳动物转录因子的稳定性是多种泛素结合酶复杂靶向的结果,并且可能在减数分裂和有丝分裂细胞周期中对cAMP诱导的基因调控产生影响。

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