Zhang Liping, Ten Hagen Kelly G
Developmental Glycobiology Section, NIDCR, National Institutes of Health, 30 Convent Drive, Bethesda, MD 20892-4370, USA.
PNAS Nexus. 2024 Aug 6;3(8):pgae322. doi: 10.1093/pnasnexus/pgae322. eCollection 2024 Aug.
Glycoproteins are abundant within the human reproductive system and alterations in glycosylation lead to reproductive disorders, suggesting that glycans play an important role in reproductive function. In this study, we used the reproductive system as a model to investigate the biological functions of O-glycosylation. We found that O-glycosylation in the male accessory glands, an organ responsible for secreting seminal fluid proteins, plays important roles in female postmating behavior. The loss of one O-glycosyltransferase, PGANT9, in the male reproductive system resulted in decreased egg production in mated females. We identified one substrate of PGANT9, lectin-46Ca (CG1656), which is known to affect female postmating responses. We further show that the loss of lectin-46Ca O-glycosylation affects its ability to associate with sperm tails, resulting in reduced transfer within the female reproductive system. Our results provide the first example that O-glycosylation of a seminal fluid protein affects its ability to associate with sperm in vivo. These studies may shed light on the biological function of O-glycans in mammalian reproduction.
糖蛋白在人类生殖系统中大量存在,糖基化的改变会导致生殖紊乱,这表明聚糖在生殖功能中起着重要作用。在本研究中,我们以生殖系统为模型来研究O-糖基化的生物学功能。我们发现,雄性附腺(一种负责分泌精液蛋白的器官)中的O-糖基化在雌性交配后的行为中起重要作用。雄性生殖系统中一种O-糖基转移酶PGANT9的缺失导致交配后的雌性产卵量减少。我们鉴定出PGANT9的一种底物,凝集素-46Ca(CG1656),已知它会影响雌性交配后的反应。我们进一步表明,凝集素-46Ca的O-糖基化缺失会影响其与精子尾部结合的能力,导致其在雌性生殖系统内的转移减少。我们的结果首次证明了精液蛋白的O-糖基化会影响其在体内与精子结合的能力。这些研究可能会揭示O-聚糖在哺乳动物生殖中的生物学功能。