Holton Rebecca A, Harris Abigail M, Mukerji Barenya, Singh Tanu, Dia Ferdusy, Berkowitz Karen M
Department of Biochemistry and Molecular Biology.
Department of Obstetrics and Gynecology, Drexel University College of Medicine, Philadelphia, PA, USA.
Biol Reprod. 2020 Jun 23;103(1):24-35. doi: 10.1093/biolre/ioaa036.
The number and quality of oocytes, as well as the decline in both of these parameters with age, determines reproductive potential in women. However, the underlying mechanisms of this diminution are incompletely understood. Previously, we identified novel roles for CHTF18 (Chromosome Transmission Fidelity Factor 18), a component of the conserved Replication Factor C-like complex, in male fertility and gametogenesis. Currently, we reveal crucial roles for CHTF18 in female meiosis and oocyte development. Chtf18-/- female mice are subfertile and have fewer offspring beginning at 6 months of age. Consistent with age-dependent subfertility, Chtf18-/- ovaries contain fewer follicles at all stages of folliculogenesis than wild type ovaries, but the decreases are more significant at 3 and 6 months of age. By 6 months of age, both primordial and growing ovarian follicle pools are markedly reduced to near depletion. Chromosomal synapsis in Chtf18-/- oocytes is complete, but meiotic recombination is impaired resulting in persistent DNA double-strand breaks, fewer crossovers, and early homolog disjunction during meiosis I. Consistent with poor oocyte quality, the majority of Chtf18-/- oocytes fail to progress to metaphase II following meiotic resumption and a significant percentage of those that do progress are aneuploid. Collectively, our findings indicate critical functions for CHTF18 in ensuring both the quantity and quality of the mammalian oocyte pool.
卵母细胞的数量和质量,以及这两个参数随年龄的下降,决定了女性的生殖潜力。然而,这种减少的潜在机制尚未完全了解。此前,我们发现了保守的复制因子C样复合物的一个组成部分CHTF18(染色体传递保真因子18)在男性生育力和配子发生中的新作用。目前,我们揭示了CHTF18在雌性减数分裂和卵母细胞发育中的关键作用。Chtf18-/-雌性小鼠生育力低下,从6个月大开始后代数量减少。与年龄依赖性生育力低下一致,Chtf18-/-卵巢在卵泡发生的所有阶段的卵泡数量都比野生型卵巢少,但在3个月和6个月大时减少更为显著。到6个月大时,原始卵泡池和生长卵泡池都明显减少至几乎耗尽。Chtf18-/-卵母细胞中的染色体联会是完整的,但减数分裂重组受损,导致减数分裂I期间持续的DNA双链断裂、交叉减少和同源染色体过早分离。与卵母细胞质量差一致,大多数Chtf18-/-卵母细胞在减数分裂恢复后无法进入减数分裂II中期,而那些进入减数分裂II中期的卵母细胞中有很大比例是非整倍体。总的来说,我们的研究结果表明CHTF18在确保哺乳动物卵母细胞库的数量和质量方面具有关键作用。