Institute of Pathology, Department of Developmental Pathology, Medical Faculty, University of Bonn, Bonn, Germany.
Bonn Technology Campus, Core Facility 'Gene-Editing', Medical Faculty, University of Bonn, Bonn, Germany.
Elife. 2023 Nov 28;12:RP86100. doi: 10.7554/eLife.86100.
Cylicins are testis-specific proteins, which are exclusively expressed during spermiogenesis. In mice and humans, two Cylicins, the gonosomal X-linked Cylicin 1 () and the autosomal Cylicin 2 () genes, have been identified. Cylicins are cytoskeletal proteins with an overall positive charge due to lysine-rich repeats. While Cylicins have been localized in the acrosomal region of round spermatids, they resemble a major component of the calyx within the perinuclear theca at the posterior part of mature sperm nuclei. However, the role of Cylicins during spermiogenesis has not yet been investigated. Here, we applied CRISPR/Cas9-mediated gene editing in zygotes to establish and -deficient mouse lines as a model to study the function of these proteins. deficiency resulted in male subfertility, whereas , , and males were infertile. Phenotypical characterization revealed that loss of Cylicins prevents proper calyx assembly during spermiogenesis. This results in decreased epididymal sperm counts, impaired shedding of excess cytoplasm, and severe structural malformations, ultimately resulting in impaired sperm motility. Furthermore, exome sequencing identified an infertile man with a hemizygous variant in and a heterozygous variant in , displaying morphological abnormalities of the sperm including the absence of the acrosome. Thus, our study highlights the relevance and importance of Cylicins for spermiogenic remodeling and male fertility in human and mouse, and provides the basis for further studies on unraveling the complex molecular interactions between perinuclear theca proteins required during spermiogenesis.
环蛋白是睾丸特异性蛋白,仅在精子发生过程中表达。在小鼠和人类中,已经鉴定出两种环蛋白,即性染色体连锁的环蛋白 1()和常染色体环蛋白 2()基因。环蛋白是带有赖氨酸丰富重复序列的细胞骨架蛋白,整体带正电荷。虽然环蛋白已在圆形精子细胞的顶体区域定位,但它们类似于成熟精子核后部核周质中花萼的主要成分。然而,环蛋白在精子发生中的作用尚未得到研究。在这里,我们应用 CRISPR/Cas9 介导的基因编辑在受精卵中建立和-缺陷的小鼠品系,作为研究这些蛋白质功能的模型。缺陷导致雄性生育力降低,而、、和缺陷雄性不育。表型特征表明,环蛋白缺失可防止精子发生过程中环的正确组装。这导致附睾精子计数减少,多余细胞质的脱落受损,以及严重的结构畸形,最终导致精子运动能力受损。此外,外显子组测序鉴定出一名不育男性,其在中存在半合子变异,在中存在杂合子变异,表现出精子形态异常,包括顶体缺失。因此,我们的研究强调了环蛋白在人类和小鼠精子发生重塑和雄性生育力中的相关性和重要性,并为进一步研究精子发生过程中所需的核周质蛋白之间复杂的分子相互作用提供了基础。