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泛素连接酶 Ubr2 是 N 端规则途径的识别 E3 成分,在精子发生过程中稳定 Tex19.1。

The ubiquitin ligase Ubr2, a recognition E3 component of the N-end rule pathway, stabilizes Tex19.1 during spermatogenesis.

机构信息

Department of Animal Biology, Center for Animal Transgenesis and Germ Cell Research, University of Pennsylvania School of Veterinary Medicine, Philadelphia, Pennsylvania, United States of America.

出版信息

PLoS One. 2010 Nov 16;5(11):e14017. doi: 10.1371/journal.pone.0014017.

Abstract

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.

摘要

泛素 E3 连接酶将其底物靶向泛素化,导致蛋白酶体介导的降解或改变生化特性。泛素连接酶 Ubr2 是 N 端规则蛋白水解途径的识别 E3 成分,识别具有 N 端不稳定残基的蛋白质,在精子发生中发挥重要作用。Tex19.1(也称为 Tex19)以前被鉴定为小鼠睾丸中的一种生殖细胞特异性蛋白。在这里,我们报告 Tex19.1 在小鼠睾丸中与 Ubr2 形成稳定的蛋白质复合物。Tex19.1 与 Ubr2 的结合不依赖于 Tex19.1 的第二个位置半胱氨酸,该半胱氨酸是 N 端规则途径 R-转移酶的精氨酸化的潜在靶标。Tex19.1 缺失的小鼠突变体在三个方面与 Ubr2 缺陷型突变体相似:精子发生缺陷的异质性、减数分裂染色体联会异常和胚胎致死,主要影响雌性。在 Ubr2 缺陷型生殖细胞中,Tex19.1 转录,但 Tex19.1 蛋白缺失。我们的结果表明,Ubr2 与 Tex19.1 的结合在精子发生过程中代谢稳定了 Tex19.1,揭示了 Ubr2 在传统 N 端规则途径之外的新功能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b097/2982839/28fbdfe1cb1b/pone.0014017.g001.jpg

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