Key Laboratory of Regenerative Medicine (JNU-CUHK), Ministry of Education, Department of Developmental and Regenerative Biology, College of Life Science and Technology, Jinan University, Guangzhou, 510632, People's Republic of China.
Guangdong Province Key Laboratory of Pharmaceutical Functional Genes, College of Life Sciences, Sun Yat-Sen University, Guangzhou, 510275, China.
Endocrinology. 2022 Jun 1;163(6). doi: 10.1210/endocr/bqac048.
Ovarian aging is associated with depletion of the ovarian follicle reserve, which is the key determinant of fertility potential in females. In this study, we found that the small, secreted protein complement 1Q-like (C1QL1) is involved in the regulation of follicle depletion through intraovarian and endocrine control in a multidimensional collaborative manner. C1ql1 was detected to be conserved in the ovary and showed high transcript levels during folliculogenesis. Blockade of C1QL1 by IP and ovarian intrabursal injection of C1QL1 antiserum into prepubertal mice impaired folliculogenesis accompanied by reductions in body weight, fat mass, and intraovarian lipid accumulation. An elevation of circulating estradiol levels, reduction of hypothalamic KISS1 and GnRH expression, and a decrease in serum FSH levels were found in C1QL1-deficient mice. In C1QL1-deficient ovaries, many primordial follicles were recruited and developed into medium follicles but underwent atresia at the large follicle stages, which resulted in depletion of follicle reserve. Depletion of C1QL1 alleviated the inhibitory effect of C1QL1 on granulosa cell apoptosis and the stimulatory effect of C1QL1 on granulosa cell autophagy, which resulted in accumulation in the preantral and early antral follicles and an increase in the atretic follicles. The abnormal profile of endocrine hormones accelerated the intraovarian effect of C1QL1 deficiency and further led to depletion of ovarian reserve. Altogether, this study revealed the expression patterns and the mechanism of action of C1QL1 during folliculogenesis and demonstrated that deficiency of C1QL1 caused ovarian follicular depletion.
卵巢衰老与卵巢卵泡储备耗竭有关,而卵泡储备是女性生育潜能的关键决定因素。在这项研究中,我们发现,小分泌蛋白补体 1Q 样(C1QL1)通过卵巢内和内分泌的多维协同调控,参与卵泡耗竭的调节。C1ql1 在卵巢中被检测到保守存在,并在卵泡发生过程中表现出高转录水平。通过 IP 阻断和将 C1QL1 抗血清注入未成熟小鼠的卵巢内囊泡内,C1QL1 的耗竭损害了卵泡发生,伴随着体重、脂肪量和卵巢内脂质积累的减少。在 C1QL1 缺陷小鼠中发现循环雌二醇水平升高、下丘脑 Kiss1 和 GnRH 表达减少以及血清 FSH 水平降低。在 C1QL1 缺陷的卵巢中,许多原始卵泡被招募并发育成中等大小的卵泡,但在大卵泡阶段发生闭锁,导致卵泡储备耗竭。C1QL1 的耗竭减轻了 C1QL1 对颗粒细胞凋亡的抑制作用和对颗粒细胞自噬的刺激作用,导致在窦前和早期窦卵泡中积累,并增加了闭锁卵泡。内分泌激素的异常谱加速了 C1QL1 缺乏的卵巢内作用,并进一步导致卵巢储备耗竭。总之,这项研究揭示了 C1QL1 在卵泡发生过程中的表达模式和作用机制,并表明 C1QL1 的缺乏导致了卵巢卵泡的耗竭。