South Ehime Fisheries Research Center, Ehime University, Ainan 798-4206, Japan; Laboratory of Reproductive Biology, National Institute for Basic Biology, Okazaki 444-8585, Japan; Laboratory of Molecular Environmental Endocrinology, Okazaki Institute for Integrative Bioscience, National Institute of Natural Sciences, Okazaki 444-8787, Japan.
South Ehime Fisheries Research Center, Ehime University, Ainan 798-4206, Japan.
Stem Cell Reports. 2019 Aug 13;13(2):419-433. doi: 10.1016/j.stemcr.2019.07.013.
In vertebrates, estrogen receptors are essential for estrogen-associated early gonadal sex development. Our previous studies revealed sexual dimorphic expression of estrogen receptor β2 (ERβ2) during embryogenesis of medaka, and here we investigated the functional importance of ERβ2 in female gonad development and maintenance using a transgenerational ERβ2-knockdown (ERβ2-KD) line and ERβ2-null mutants. We found that ERβ2 reduction favored male-biased gene transcription, suppressed female-responsive gene expression, and affected SDF1a and CXCR4b co-assisted chemotactic primordial germ cell (PGC) migration. Co-overexpression of SDF1a and CXXR4b restored the ERβ2-KD/KO associated PGC mismigration. Further analysis confirmed that curtailment of ERβ2 increased intracellular Ca concentration, disrupted intra- and extracellular calcium homeostasis, and instigated autophagic germ cell degradation and germ cell loss, which in some cases ultimately affected the XX female sexual development. This study is expected improve our understanding of germ cell maintenance and sex spectrum, and hence open new avenues for reproductive disorder management.
在脊椎动物中,雌激素受体对于与雌激素相关的早期性腺性别发育是必不可少的。我们之前的研究揭示了 ERβ2 在斑马鱼胚胎发生过程中的性别二态性表达,在这里,我们使用跨代 ERβ2 敲低 (ERβ2-KD) 系和 ERβ2 缺失突变体研究了 ERβ2 在雌性性腺发育和维持中的功能重要性。我们发现 ERβ2 的减少有利于偏向雄性的基因转录,抑制了雌性反应基因的表达,并影响了 SDF1a 和 CXCR4b 共同辅助的原始生殖细胞 (PGC) 迁移。SDF1a 和 CXXR4b 的共过表达恢复了 ERβ2-KD/KO 相关的 PGC 迁移异常。进一步的分析证实,ERβ2 的减少增加了细胞内 Ca 浓度,破坏了细胞内和细胞外钙稳态,并引发了自噬性生殖细胞降解和生殖细胞丢失,在某些情况下最终影响了 XX 雌性的性发育。这项研究有望提高我们对生殖细胞维持和性别谱的理解,从而为生殖障碍管理开辟新的途径。