首页> 外文期刊>Genes and Development: a Journal Devoted to the Molecular Analysis of Gene Expression in Eukaryotes, Prokaryotes, and Viruses >Spermatogenesis rescue in a mouse deficient for the ubiquitin ligase SCF{beta}-TrCP by single substrate depletion.
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Spermatogenesis rescue in a mouse deficient for the ubiquitin ligase SCF{beta}-TrCP by single substrate depletion.

机译:通过单底物耗竭,在缺乏泛素连接酶SCFβ-TrCP的小鼠中挽救精子发生。

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摘要

beta-TrCP, the substrate recognition subunit of a Skp1-Cul1-F-box (SCF) ubiquitin ligase, is ubiquitously expressed from two distinct paralogs, targeting many regulatory proteins for proteasomal degradation. We generated inducible beta-TrCP hypomorphic mice and found that they are surprisingly healthy, yet have a severe testicular defect. We show that the two beta-TrCP paralogs have a nonredundant role in spermatogenesis. The testicular defect is tightly associated with cell adhesion failure within the seminiferous tubules and is fully reversible upon beta-TrCP restoration. Remarkably, testicular depletion of a single beta-TrCP substrate, Snail1, rescued the adhesion defect and restored spermatogenesis. Our studies highlight an unexpected functional reserve of this central E3, as well as a bottleneck in a specific tissue: a single substrate whose stabilization is incompatible with testicular differentiation.
机译:beta-TrCP,Skp1-Cul1-F-box(SCF)泛素连接酶的底物识别亚基,从两个不同的旁系同源物普遍表达,靶向许多蛋白酶体降解的调节蛋白。我们生成了可诱导的β-TrCP亚型小鼠,发现它们出奇地健康,但存在严重的睾丸缺陷。我们表明,两个β-TrCP旁系同源物在精子发生中具有非冗余作用。睾丸缺损与生精小管内的细胞粘附失败紧密相关,并且在β-TrCP修复后完全可逆。值得注意的是,单β-TrCP底物Snail1的睾丸耗竭可以挽救粘连缺陷并恢复精子生成。我们的研究突出了这种中央E3的意外功能储备,以及特定组织的瓶颈:单一基质,其稳定性与睾丸分化不兼容。

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