Mohtar Mohamad Shuib Bin Mohamad, Setiawan Rangga, Kuwabara Maiko, Asano Atsushi
Graduate School of Life and Environmental Sciences, University of Tsukuba, 1-1-1 Tennodai, Tsukuba, Ibaraki 305-8572, Japan.
Faculty of Animal Husbandry, Universitas Padjadjaran, West Java 45363, Indonesia.
J Poult Sci. 2025 Aug 30;62:2025024. doi: 10.2141/jpsa.2025024. eCollection 2025.
Sperm-egg interactions involve a complex series of molecular events. Among these, the acrosome reaction (AR) is a prerequisite for sperm penetration, facilitating the exposure of multiple acrosomal proteins that enhance sperm binding or penetration of the outer layer of the egg; however, the specific molecules involved in this process vary across species. A disintegrin and metalloproteinase (ADAM) proteins are transmembrane glycoproteins that play a role in sperm-egg interactions, with notable differences among ADAM isoforms. In a previous characterization of the chicken sperm membrane proteome, ADAM32 metallopeptidase domain 32-like 2 (ADAM32L2), a protein structurally homologous to mammalian ADAMs, but absent in mammals, was identified. ADAM32L2 was located in the acrosomal region, underwent processing during the AR, similar to certain mammalian sperm ADAMs, and likely contributed to sperm binding to the inner perivitelline layer (IPVL) in chickens. Using various protease inhibitors, it was confirmed that sperm protease activity was involved in multiple stages of sperm interaction with the IPVL. Using a specific antibody, ADAM32L2 was predominantly expressed in the testis and localized to the sperm acrosomal region. Upon separation of the acrosome cap through an inherent AR process in chicken sperm, the 80 kDa acrosomal ADAM32L2 was processed into a 45 kDa C-terminal fragment during AR. Although zymography did not detect metalloproteinase activity in this fragment, a purified ADAM32L2 antibody inhibited sperm penetration of the IPVL, suggesting that the processed form was involved in IPVL binding. These findings elucidate the mechanism of sperm-IPVL interactions and offer new insights into the functional role of ADAM proteins in avian sperm.
精卵相互作用涉及一系列复杂的分子事件。其中,顶体反应(AR)是精子穿透的先决条件,它促使多种顶体蛋白暴露,增强精子与卵外层的结合或穿透;然而,参与这一过程的具体分子因物种而异。解整合素和金属蛋白酶(ADAM)蛋白是跨膜糖蛋白,在精卵相互作用中发挥作用,不同的ADAM亚型存在显著差异。在先前对鸡精子膜蛋白质组的表征中,鉴定出了ADAM32金属肽酶结构域32样2(ADAM32L2),一种在结构上与哺乳动物ADAM同源但在哺乳动物中不存在的蛋白质。ADAM32L2位于顶体区域,在顶体反应期间经历加工,类似于某些哺乳动物精子ADAM,可能有助于鸡精子与卵黄膜内层(IPVL)结合。使用各种蛋白酶抑制剂证实,精子蛋白酶活性参与精子与IPVL相互作用的多个阶段。使用特异性抗体,发现ADAM32L2主要在睾丸中表达,并定位于精子顶体区域。通过鸡精子固有的顶体反应过程分离顶体帽后,80 kDa的顶体ADAM32L2在顶体反应期间被加工成45 kDa的C端片段。尽管酶谱分析未检测到该片段中的金属蛋白酶活性,但纯化的ADAM32L2抗体抑制了精子对IPVL的穿透,表明加工后的形式参与了IPVL结合。这些发现阐明了精子与IPVL相互作用的机制,并为ADAM蛋白在禽类精子中的功能作用提供了新的见解。