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The Ubiquitin Ligase Ubr2 a Recognition E3 Component of the N-End Rule Pathway Stabilizes Tex19.1 during Spermatogenesis

机译:泛素连接酶Ubr2N端规则通路的识别E3组件在生精过程中稳定Tex19.1。

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摘要

Ubiquitin E3 ligases target their substrates for ubiquitination, leading to proteasome-mediated degradation or altered biochemical properties. The ubiquitin ligase Ubr2, a recognition E3 component of the N-end rule proteolytic pathway, recognizes proteins with N-terminal destabilizing residues and plays an important role in spermatogenesis. Tex19.1 (also known as Tex19) has been previously identified as a germ cell-specific protein in mouse testis. Here we report that Tex19.1 forms a stable protein complex with Ubr2 in mouse testes. The binding of Tex19.1 to Ubr2 is independent of the second position cysteine of Tex19.1, a putative target for arginylation by the N-end rule pathway R-transferase. The Tex19.1-null mouse mutant phenocopies the Ubr2-deficient mutant in three aspects: heterogeneity of spermatogenic defects, meiotic chromosomal asynapsis, and embryonic lethality preferentially affecting females. In Ubr2-deficient germ cells, Tex19.1 is transcribed, but Tex19.1 protein is absent. Our results suggest that the binding of Ubr2 to Tex19.1 metabolically stabilizes Tex19.1 during spermatogenesis, revealing a new function for Ubr2 outside the conventional N-end rule pathway.
机译:泛素E3连接酶靶向其底物进行泛素化,从而导致蛋白酶体介导的降解或生化特性改变。泛素连接酶Ubr2是N端规则蛋白水解途径的识别E3成分,可识别具有N端不稳定残基的蛋白质,并在精子发生中起重要作用。 Tex19.1(也称为Tex19)先前已被鉴定为小鼠睾丸中的生殖细胞特异性蛋白。在这里,我们报道Tex19.1与Ubr2在小鼠睾丸中形成稳定的蛋白质复合物。 Tex19.1与Ubr2的结合独立于Tex19.1的第二个位置的半胱氨酸,Tex19.1是通过N端规则途径R-转移酶进行精氨酰化的一个潜在靶标。 Tex19.1-null小鼠突变体在三个方面对Ubr2缺陷型突变进行表型分析:生精缺陷的异质性,减数分裂的染色体突触和优先影响雌性的胚胎致死率。在缺乏Ubr2的生殖细胞中,转录Tex19.1,但不存在Tex19.1蛋白。我们的研究结果表明,Ubr2与Tex19.1的结合在精子发生过程中稳定了Tex19.1的代谢,从而揭示了常规N端规则途径以外的Ubr2的新功能。

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