Center for Energy Metabolism and Reproduction, Shenzhen Institute of Advanced Technology, Chinese Academy of Sciences, Shenzhen, Guangdong, China.
Shenzhen Key Laboratory of Fertility Regulation, Center of Assisted Reproduction and Embryology, The University of Hong Kong-Shenzhen Hospital, Shenzhen, Guangdong, China.
Commun Biol. 2024 Sep 7;7(1):1099. doi: 10.1038/s42003-024-06782-6.
Centromere pairing is crucial for synapsis in meiosis. This study delves into the Skp1-Cullin1-F-box protein (SCF) E3 ubiquitin ligase complex, specifically focusing on F-box protein 47 (FBXO47), in mouse meiosis. Here, we revealed that FBXO47 is localized at the centromere and it regulates centromere pairing cooperatively with SKP1 to ensure proper synapsis in pachynema. The absence of FBXO47 causes defective centromeres, resulting in incomplete centromere pairing, which leads to corruption of SC at centromeric ends and along chromosome axes, triggering premature dissociation of chromosomes and pachytene arrest. FBXO47 deficient pachytene spermatocytes exhibited drastically reduced SKP1 expression at centromeres and chromosomes. Additionally, FBXO47 stabilizes SKP1 by down-regulating its ubiquitination in HEK293T cells. In essence, we propose that FBXO47 collaborates with SKP1 to facilitate centromeric SCF formation in spermatocytes. In summary, we posit that the centromeric SCF E3 ligase complex regulates centromere pairing for pachynema progression in mice.
着丝粒配对对于减数分裂中的联会至关重要。本研究深入探讨了 Skp1-Cullin1-F-box 蛋白 (SCF) E3 泛素连接酶复合物,特别是在小鼠减数分裂中对 F-box 蛋白 47(FBXO47)的研究。在这里,我们揭示了 FBXO47 定位于着丝粒,它与 SKP1 共同调节着丝粒配对,以确保在粗线期正确联会。FBXO47 的缺失会导致着丝粒缺陷,导致不完全的着丝粒配对,从而导致在着丝粒末端和染色体轴上的 SC 腐败,引发染色体过早解离和粗线期阻滞。FBXO47 缺陷的粗线期精母细胞在着丝粒和染色体上表现出 SKP1 表达明显减少。此外,FBXO47 通过下调 HEK293T 细胞中的泛素化来稳定 SKP1。从本质上讲,我们提出 FBXO47 与 SKP1 合作,促进精母细胞中着丝粒 SCF 的形成。总之,我们认为着丝粒 SCF E3 连接酶复合物调节着丝粒配对,以促进小鼠粗线期的进展。