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WFDC基因簇内的大规模CRISPR/Cas9缺失揭示了基因功能及在哺乳动物繁殖中的关键作用。

Large-scale CRISPR/Cas9 deletions within the WFDC gene cluster uncover gene functionality and critical roles in mammalian reproduction.

作者信息

Kent Katarzyna, Nozawa Kaori, Parkes Rachel, Dean Laura, Daniel Frey, Leng Mei, Jain Antrix, Malovannaya Anna, Matzuk Martin M, X Garcia Thomas

机构信息

Center for Drug Discovery, Department of Pathology & Immunology, Baylor College of Medicine, Houston, TX 77030.

Department of Pathology and Immunology, Baylor College of Medicine, Houston, TX 77030.

出版信息

Proc Natl Acad Sci U S A. 2024 Dec 17;121(51):e2413195121. doi: 10.1073/pnas.2413195121. Epub 2024 Dec 12.

Abstract

Despite 96 million years of evolution separating humans and rodents, 11 closely related reproductive tract-specific genes in humans-, , , , , , , , , , and -and the 13 reproductive tract-specific orthologous genes in mice, form highly conserved syntenic gene clusters indicative of conserved, combined critical functions. Further, despite significant progress toward a nonhormonal male contraceptive targeting the protein encoded by one of these genes, epididymal peptidase inhibitor (EPPIN), and associations found between mutations in and an increased risk of male infertility, neither EPPIN nor any closely related whey acidic protein four-disulfide core (WFDC) gene have been explored functionally. To clarify the involvement of WFDC genes in male fertility, we strategically used CRISPR/Cas9 to generate mice lacking 13, 10, 5, or 4 genes within the cluster and demonstrated that males with deletions of 13, 10, or 4 genes (Wfdc6a, Eppin, Wfdc8, and Wfdc6a) were sterile due to an arrest in spermatogenesis, preventing formation beyond round spermatids. In contrast, the five gene knockout (KO) males (lacking , , , , and ), despite normal spermatogenesis and sperm counts, were infertile due to defects in sperm motility and increased sperm death. Similarly to our previously reported single gene KO, single KO mice were fertile with no obvious reproductive phenotype. Our KO mouse studies to explore the entire WFDC locus of closely related genes have clarified the functional requirements of WFDC locus genes in different aspects of male fertility. Our research has implications for improving clinical diagnoses of male infertility and identifying additional targets for nonhormonal male contraception.

摘要

尽管人类和啮齿动物在进化上相隔9600万年,但人类中11个密切相关的生殖道特异性基因( 、 、 、 、 、 、 、 、 、 和 )以及小鼠中13个生殖道特异性直系同源基因,形成了高度保守的同线基因簇,表明存在保守的、共同的关键功能。此外,尽管在开发针对这些基因之一(附睾肽酶抑制剂,EPPIN)编码蛋白的非激素男性避孕药方面取得了重大进展,并且发现 基因突变与男性不育风险增加之间存在关联,但尚未对EPPIN或任何密切相关的乳清酸性蛋白四二硫键核心(WFDC)基因进行功能研究。为了阐明WFDC基因在男性生育中的作用,我们策略性地使用CRISPR/Cas9技术构建了缺失该基因簇中13个、10个、5个或4个基因的小鼠,并证明缺失13个、10个或4个基因(Wfdc6a、Eppin、Wfdc8和Wfdc6a)的雄性小鼠由于精子发生停滞而不育,无法形成圆形精子细胞以上阶段的精子。相比之下,五个基因敲除(KO)雄性小鼠(缺失 、 、 、 和 )尽管精子发生和精子数量正常,但由于精子活力缺陷和精子死亡增加而不育。与我们之前报道的单基因敲除类似,单基因敲除小鼠可育,没有明显的生殖表型。我们通过基因敲除小鼠研究来探索密切相关基因的整个WFDC基因座,阐明了WFDC基因座基因在男性生育不同方面的功能需求。我们的研究对改善男性不育的临床诊断和确定非激素男性避孕的其他靶点具有重要意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3991/11665854/6cc6bc7ca2af/pnas.2413195121fig01.jpg

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