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Cholecystokinin coordinates gonadotropin-dependent and independent pathways to orchestrate zebrafish gonadal development

Li Hangyu, Yuan Faming, Liang Hongwei, Li Xiang, Zheng Shuo, Wang Linlin, Wu Xiangchen, Li Changyan, Zeng Xiangtong, Rao Xuewen, Huang Dandong, Liang Zhixiu, Cai Tianyi, Xu Shaohua, Qin Xiangfeng, Liu Xiangjiang, Yin Zhan, Hu Guangfu

Journal:Nature Communications

IF:18.1

DOI:10.1038/s41467-026-72039-x

PMID:

Published:2026-04-18

research field:内分泌学生殖生物学分子遗传学发育生物学神经内分泌学

Abstract

Cholecystokinin (CCK) is established as a critical regulator of teleost gonadal development, functioning not only as a follicle-stimulating-hormone-releasing hormone (FSH-RH) but also stimulating gonadal development through three distinct mechanisms. Specifically, (1) CCK directly activates pituitary lhb transcription via CCKBRb in a specific bi-hormonal subpopulation, and indirectly enhances hypothalamic gnrh3 expression to regulate LH synthesis and secretion. However, CCK’s physiological role in LH regulation requires further investigation, and its effect may involve both direct and indirect mechanisms, including targeting a specific bi-hormonal subpopulation. (2) CCK exerts gonadotropin-independent control over primordial germ cell (PGC) proliferation during embryogenesis, evidenced by significantly reduced PGC numbers in cck1−/−;cck2−/− and cckbrb−/− mutants, a phenotype absent in fshb−/− and lhb−/−;fshb−/− zebrafish. (3) CCK initiates meiosis and maintains gonadal somatic cell survival by suppressing apoptosis; these processes are abrogated in CCK-deficient mutants but remain intact in gonadotropin-deficient lines. Collectively, hypothalamic and peripheral CCK cells regulate gonadal function through gonadotropin-dependent and gonadotropin-independent pathways, respectively, thereby coordinating gonadal development from germline establishment to maturation. In zebrafish, cholecystokinin drives gonadal development via two parallel pathways: direct FSH stimulation in the pituitary and local regulation of germ cell proliferation and survival within the gonad.

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