Reproductive and Developmental Sciences Program, Department of Animal Science, Michigan State University, East Lansing, MI 48824, USA.
Department of Computational Mathematics, Science and Engineering, Michigan State University, East Lansing, MI 48824, USA.
Endocrinology. 2022 May 1;163(5). doi: 10.1210/endocr/bqac047.
In females, reproductive success is dependent on the expression of a number of genes regulated at different levels, one of which is through epigenetic modulation. How a specific epigenetic modification regulates gene expression and their downstream effect on ovarian function are important for understanding the female reproductive process. The trimethylation of histone3 at lysine27 (H3K27me3) is associated with gene repression. JMJD3 (or KDM6b), a jumonji domain-containing histone demethylase specifically catalyzes the demethylation of H3K27me3, that positively influences gene expression. This study reports that the expression of JMJD3 specifically in the ovarian granulosa cells (GCs) is critical for maintaining normal female fertility. Conditional deletion of Jmjd3 in the GCs results in a decreased number of total healthy follicles, disrupted estrous cycle, and increased follicular atresia culminating in subfertility and premature ovarian failure. At the molecular level, the depletion of Jmjd3 and RNA-seq analysis reveal that JMJD3 is essential for mitochondrial function. JMJD3-mediated reduction of H3K27me3 induces the expression of Lif (Leukemia inhibitory factor) and Ctnnb1 (β-catenin), that in turn regulate the expression of key mitochondrial genes critical for the electron transport chain. Moreover, mitochondrial DNA content is also significantly decreased in Jmjd3 null GCs. Additionally, we have uncovered that the expression of Jmjd3 in GCs decreases with age, both in mice and in humans. Thus, in summary, our studies highlight the critical role of JMJD3 in nuclear-mitochondrial genome coordination that is essential for maintaining normal ovarian function and female fertility and underscore a potential role of JMJD3 in female reproductive aging.
在女性中,生殖成功取决于许多基因的表达,这些基因在不同水平受到调控,其中之一是通过表观遗传修饰。特定的表观遗传修饰如何调节基因表达及其对卵巢功能的下游影响,对于理解女性生殖过程至关重要。组蛋白 3 赖氨酸 27 三甲基化(H3K27me3)与基因抑制有关。JMJD3(或 KDM6b)是一种具有结构域的组蛋白去甲基酶,特异性催化 H3K27me3 的去甲基化,从而正向影响基因表达。本研究报告 JMJD3 在卵巢颗粒细胞(GCs)中的特异性表达对于维持正常女性生育力至关重要。GCs 中 Jmjd3 的条件缺失导致总健康卵泡数量减少、动情周期紊乱和卵泡闭锁增加,最终导致生育力下降和卵巢早衰。在分子水平上,JMJD3 的耗竭和 RNA-seq 分析表明 JMJD3 对于线粒体功能是必需的。JMJD3 介导的 H3K27me3 减少诱导 Lif(白血病抑制因子)和 Ctnnb1(β-连环蛋白)的表达,进而调节关键线粒体基因的表达,这些基因对于电子传递链至关重要。此外,Jmjd3 缺失的 GCs 中线粒体 DNA 含量也显著降低。此外,我们还发现 Jmjd3 在 GCs 中的表达随着年龄的增长而下降,无论是在小鼠还是在人类中。因此,综上所述,我们的研究强调了 JMJD3 在核-线粒体基因组协调中的关键作用,这对于维持正常卵巢功能和女性生育力至关重要,并强调了 JMJD3 在女性生殖衰老中的潜在作用。