CCDC89 is required for optimal sperm motility and male fertility in mammals

IF 6 1区 医学 Q1 OBSTETRICS & GYNECOLOGY
Moira K O’Bryan, Gülizar Saritas, Joseph Nguyen, Sofia B Winge, Anne E O’Connor, Helen Castillo-Madeen, Donald F Conrad, Maddison Graffeo, Reza Nosrati, Jessica E M Dunleavy, Kristian Almstrup, Brendan J Houston
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引用次数: 0

Abstract

STUDY QUESTION What is the role of coiled-coil domain-containing protein 89 (CCDC89) in mammalian male fertility? SUMMARY ANSWER The presence of CCDC89 is required for normal sperm motility and therefore optimal male fertility in mice, while CCDC89 variants affected spermatogenesis in both mice and humans. WHAT IS KNOWN ALREADY Coiled-coiled domain-containing proteins play a variety of roles in biological processes, including cell division, the production of motile sperm, and the regulation of their motility. STUDY DESIGN, SIZE, DURATION DNA from infertile men with azoospermia was sequenced to identify genetic variants as per the Genetics of Male Infertility Initiative (GEMINI) study. Genetic variants were identified in CCDC89 in three men, by whole exome sequencing. A testis biopsy from infertile Patient 1 (CCDC89 variant c. G903T) was available and used to inspect tissue pathology. Ccdc89 knockout (Ccdc89−/−) and Ccdc89E297D/E297D mutant mouse models were generated to define the role of CCDC89 in male fertility and the role of the specific CCDC89 genetic variant, c. G903T, in the pathogenesis of infertility. PARTICIPANTS/MATERIALS, SETTING, METHODS CCDC89 RNA expression and protein localization were investigated in a testis biopsy from a control male with normal spermatogenesis. Male fertility of the mutant mouse lines was assessed via breeding, histology, daily sperm production, electron microscopy, computer-assisted and high-speed sperm motility analysis, and in vitro fertilization. MAIN RESULTS AND THE ROLE OF CHANCE Ccdc89−/− male mice were sub-fertile, with impaired progressive sperm motility and curvilinear velocity due to a rigid sperm tail midpiece without any overt structural defects. While Ccdc89E297D/E297D males were fertile, their testis weights and germ cell content were reduced, suggesting a potential role of the c. G903T variant, observed in each of the two men, in the pathogenesis of their spermatogenic impairment. We also identified a new genetic variant in CCDC89 (c.G1024A) in another infertile man, that was in trans with the c. G903T genetic variant. LARGE SCALE DATA N/A. LIMITATIONS, REASONS FOR CAUTION The identification of additional infertile men with genetic variants in CCDC89, and quality clinical data, are required to determine prognostic reliability regarding CCDC89 variants. There are likely to be species-specific differences in gene function. WIDER IMPLICATIONS OF THE FINDINGS Our data highlight a role for CCDC89, in regulating the sperm tail waveform, that is required for optimal sperm fertilization capacity and male fertility. We highlight CCDC89 as a regulator of male fertility in mammals, where variants in CCDC89 can affect spermatogenesis and may be a risk factor for human male infertility. This study underscores the importance of validating clinical genetic findings. STUDY FUNDING/COMPETING INTEREST(S) This work was supported by a National Health and Medical Research Council grant (APP1120356), National Institutes of Health grants (R01HD078641 and P50HD096723), the Novo Nordisk Foundation (grant numbers NNF210C0069913 and NNF21C0069969), the Capital Region of Denmark, the Independent Research Fund (grant number: 1030-00381B), and the Svend Andersen Foundation (grant number: 84-A.08), and the Christian and Ottilia Brorsons (No. 12038-1) and Frimodt-Heineke Foundation travel grants for research exchange. The authors have no conflicts of interest.
在哺乳动物中,CCDC89是最佳精子活力和雄性生育能力所必需的
研究问题:含螺旋结构域蛋白89 (CCDC89)在哺乳动物雄性生殖能力中的作用是什么?CCDC89的存在是小鼠正常精子运动和最佳雄性生育能力所必需的,而CCDC89变异影响小鼠和人类的精子发生。盘绕结构域蛋白在生物过程中发挥着多种作用,包括细胞分裂、精子运动的产生以及精子运动的调节。研究设计、大小、持续时间:根据男性不育遗传学倡议(GEMINI)研究,对无精子症不育男性的DNA进行测序,以确定遗传变异。通过全外显子组测序,在三名男性中发现了CCDC89的遗传变异。不孕症患者1 (CCDC89变体c. G903T)的睾丸活检可用来检查组织病理学。建立Ccdc89基因敲除(Ccdc89−/−)和Ccdc89E297D/E297D突变小鼠模型,以确定Ccdc89在男性生育能力中的作用,以及Ccdc89特异性遗传变异c. G903T在不育发病机制中的作用。研究对象/材料、环境、方法在精子发生正常的对照男性睾丸活检中检测CCDC89 RNA表达和蛋白定位。通过育种、组织学、每日精子产量、电子显微镜、计算机辅助和高速精子活力分析以及体外受精来评估突变小鼠系的雄性生育能力。Ccdc89 - / -雄性小鼠是低生育能力的,由于精子尾部中部坚硬,没有任何明显的结构缺陷,精子运动和曲线速度受损。虽然Ccdc89E297D/E297D男性具有生育能力,但他们的睾丸重量和生殖细胞含量减少,这表明在这两名男性中观察到的c. G903T变异在其生精功能障碍的发病机制中可能起作用。我们还在另一名不育男性中发现了一种新的CCDC89基因变异(c. g1024a),该基因与c. G903T基因变异存在反式。大规模数据。局限性,谨慎的原因需要鉴别CCDC89基因变异的其他不育男性和高质量的临床数据,以确定CCDC89变异的预后可靠性。基因功能可能存在物种特异性差异。我们的数据强调了CCDC89在调节精子尾部波形方面的作用,这是最佳精子受精能力和男性生育能力所必需的。我们强调CCDC89是哺乳动物雄性生育能力的调节因子,其中CCDC89的变异可以影响精子发生,并可能是人类男性不育的危险因素。这项研究强调了验证临床遗传学发现的重要性。研究经费/竞争利益(S)本工作由国家卫生与医学研究委员会资助(APP1120356),国家卫生研究院资助(R01HD078641和P50HD096723),诺和诺德基金会(资助号NNF210C0069913和NNF21C0069969),丹麦首都地区,独立研究基金(资助号:1030-00381B)和send Andersen基金会(资助号:84-A.08), Christian and Ottilia brosons(12038-1号)和Frimodt-Heineke Foundation的研究交流旅行补助金。作者没有利益冲突。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Human reproduction
Human reproduction 医学-妇产科学
CiteScore
10.90
自引率
6.60%
发文量
1369
审稿时长
1 months
期刊介绍: Human Reproduction features full-length, peer-reviewed papers reporting original research, concise clinical case reports, as well as opinions and debates on topical issues. Papers published cover the clinical science and medical aspects of reproductive physiology, pathology and endocrinology; including andrology, gonad function, gametogenesis, fertilization, embryo development, implantation, early pregnancy, genetics, genetic diagnosis, oncology, infectious disease, surgery, contraception, infertility treatment, psychology, ethics and social issues.
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