Center for Reproductive Biology, Washington State University, Pullman, WA, USA.
School of Molecular Biosciences, College of Veterinary Medicine, Washington State University, Pullman, WA, USA.
Nat Commun. 2023 Apr 17;14(1):2111. doi: 10.1038/s41467-023-37735-y.
In sexual reproduction, sperm contribute half the genomic material required for creation of offspring yet core molecular mechanisms essential for their formation are undefined. Here, the α-arrestin molecule arrestin-domain containing 5 (ARRDC5) is identified as an essential regulator of mammalian spermatogenesis. Multispecies testicular tissue transcriptome profiling indicates that expression of Arrdc5 is testis enriched, if not specific, in mice, pigs, cattle, and humans. Knockout of Arrdc5 in mice leads to male specific sterility due to production of low numbers of sperm that are immotile and malformed. Spermiogenesis, the final phase of spermatogenesis when round spermatids transform to spermatozoa, is defective in testes of Arrdc5 deficient mice. Also, epididymal sperm in Arrdc5 knockouts are unable to capacitate and fertilize oocytes. These findings establish ARRDC5 as an essential regulator of mammalian spermatogenesis. Considering the role of arrestin molecules as modulators of cellular signaling and ubiquitination, ARRDC5 is a potential male contraceptive target.
在有性生殖中,精子贡献了形成后代所需的一半基因组物质,但对于其形成所必需的核心分子机制尚不清楚。在这里,α-抑制蛋白分子包含 5(ARRDC5)被鉴定为哺乳动物精子发生的必需调节剂。多物种睾丸组织转录组分析表明,ARRDC5 的表达在小鼠、猪、牛和人中具有睾丸富集性,如果不是特异性的话。ARRD5 在小鼠中的敲除导致雄性特有的不育,因为产生的精子数量少且不动和畸形。精子发生是精子形成的最后阶段,此时圆形精子细胞转化为精子,在 ARRD5 缺乏的小鼠睾丸中存在缺陷。此外,ARRD5 敲除的附睾精子无法获能和受精卵子。这些发现确立了 ARRDC5 作为哺乳动物精子发生的必需调节剂。考虑到抑制蛋白分子作为细胞信号和泛素化调节剂的作用,ARRDC5 是一种潜在的男性避孕药靶标。