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睾丸特异性过氧化物酶 4 变体并非小鼠精子发生和生育所必需的。

Testis-specific peroxiredoxin 4 variant is not absolutely required for spermatogenesis and fertility in mice.

机构信息

Department of Biochemistry and Molecular Biology, Graduate School of Medical Science, Yamagata University, 2-2-2 Iidanishi, Yamagata, 990-9585, Japan.

Department of Cellular Regenerative Medicine, Graduate School of Medical Science, Kyoto Prefectural University of Medicine, Kyoto, Japan.

出版信息

Sci Rep. 2020 Oct 21;10(1):17934. doi: 10.1038/s41598-020-74667-9.

Abstract

PRDX4, a member of peroxiredoxin family, is largely concentrated in the endoplasmic reticulum (ER) and plays a pivotal role in the redox relay during oxidative protein folding as well as in peroxidase reactions. A testis-specific PRDX4 variant transcript (PRDX4t) lacks the conventional exon 1, which encodes the signal peptide that is required for entry into the ER lumen, but instead carries alternative exon 1, which is transcribed from the upstream promoter in a testis-specific manner and results in the PRDX4t protein being localized in the cytosol. However, the potential roles of PRDX4t in male genital action remain unknown. Using a CRISPR/Cas9 system, we first disrupted the testis-specific promoter/exon 1 and generated mice that were specifically deficient in PRDX4t. The resulting PRDX4t knockout (KO) mice underwent normal spermatogenesis and showed no overt abnormalities in the testis. Mating PRDX4t KO male mice with wild-type (WT) female mice produced normal numbers of offspring, indicating that a PRDX4t deficiency alone had no effect on fertility in the male mice. We then generated mice lacking both PRDX4 and PRDX4t by disrupting exon 2, which is communal to these variants. The resulting double knockout (DKO) mice were again fertile, and mature sperm isolated from the epididymis of DKO mice exhibited a normal fertilizing ability in vitro. In the meantime, the protein levels of glutathione peroxidase 4 (GPX4), which plays an essential role in the disulfide bond formation during spermatogenesis, were significantly increased in the testis and caput epididymis of the DKO mice compared with the WT mice. Based on these results, we conclude that the disruption of the function of PRDX4t in the spermatogenic process appears to be compensated by other factors including GPX4.

摘要

PRDX4 是过氧化物酶家族的一员,主要集中在内质网 (ER) 中,在氧化蛋白折叠过程中的氧化还原接力以及过氧化物酶反应中发挥关键作用。一种睾丸特异性 PRDX4 变体转录本 (PRDX4t) 缺乏传统的外显子 1,该外显子编码进入内质网腔所需的信号肽,但取而代之的是携带替代的外显子 1,该外显子 1 以睾丸特异性的方式从上游启动子转录,导致 PRDX4t 蛋白定位于细胞质中。然而,PRDX4t 在男性生殖器官中的潜在作用仍不清楚。使用 CRISPR/Cas9 系统,我们首先破坏了睾丸特异性启动子/外显子 1,并产生了特异性缺乏 PRDX4t 的小鼠。由此产生的 PRDX4t 敲除 (KO) 小鼠经历了正常的精子发生,睾丸中没有明显的异常。将 PRDX4t KO 雄性小鼠与野生型 (WT) 雌性小鼠交配产生了正常数量的后代,表明 PRDX4t 缺乏本身对雄性小鼠的生育能力没有影响。然后,我们通过破坏这两种变体共有的外显子 2 来生成同时缺乏 PRDX4 和 PRDX4t 的小鼠。由此产生的双敲除 (DKO) 小鼠仍然具有生育能力,并且从 DKO 小鼠的附睾中分离出的成熟精子在体外表现出正常的受精能力。与此同时,在 DKO 小鼠的睾丸和附睾头部中,参与精子发生中二硫键形成的谷胱甘肽过氧化物酶 4 (GPX4) 的蛋白质水平显著增加。基于这些结果,我们得出结论,PRDX4t 在精子发生过程中的功能破坏似乎被包括 GPX4 在内的其他因素所补偿。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f40c/7577974/08a046c48f37/41598_2020_74667_Fig1_HTML.jpg

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