Li Yan-Ru, Peng Rui-Rui, Gao Wen-Yi, Liu Peng, Chen Liang-Jian, Zhang Xiao-Lan, Zhang Na-Na, Wang Yang, Du Lei, Zhu Feng-Yu, Wang Li-Li, Li Cong-Rong, Zeng Wen-Tao, Li Jian-Min, Hu Fan, Zhang Dong, Yang Zhi-Xia
State Key Lab of Reproductive Medicine, Nanjing Medical University, Nanjing 211166, Jiangsu, P.R. China.
Reproductive Medical Center, Huzhou Maternity and Child Health Care Hospital, Huzhou 313000, Zhejiang, P.R. China.
Aging (Albany NY). 2019 Feb 20;11(4):1110-1128. doi: 10.18632/aging.101802.
Tight control of energy metabolism is essential for normal cell function and organism survival. PKM (pyruvate kinase, muscle) isoforms 1 and 2 originate from alternative splicing of PKM pre-mRNA. They are key enzymes in oxidative phosphorylation and aerobic glycolysis, respectively, and are essential for ATP generation. The PKM1:PKM2 expression ratio changes with development and differentiation, and may also vary under metabolic stress and other conditions. Until now, there have been no reports about the function and regulation of PKM isozymes in oocytes. Here, we demonstrate that PKM1 or PKM2 depletion significantly disrupts ATP levels and mitochondrial integrity, and exacerbates free-radical generation and apoptosis in mouse oocytes. We also show that KBTBD8, a female fertility factor in the KBTBD ubiquitin ligase family, selectively regulates PKM1 levels through a signaling cascade that includes Erk1/2 and Aurora A kinases as intermediates. Finally, using RNA sequencing and protein network analysis, we identify several regulatory proteins that may be govern generation of mature PKM1 mRNA. These results suggest KBTBD8 affects PKM1 levels in oocytes via a KBTBD8→Erk1/2→Aurora A axis, and may also affect other essential processes involved in maintaining oocyte quality.
严格控制能量代谢对于正常细胞功能和机体存活至关重要。丙酮酸激酶(肌肉型)同工酶1和2源自PKM前体mRNA的可变剪接。它们分别是氧化磷酸化和好氧糖酵解中的关键酶,对于ATP生成必不可少。PKM1:PKM2的表达比例随发育和分化而变化,在代谢应激和其他条件下也可能有所不同。到目前为止,尚无关于PKM同工酶在卵母细胞中的功能和调控的报道。在此,我们证明PKM1或PKM2缺失会显著破坏小鼠卵母细胞中的ATP水平和线粒体完整性,并加剧自由基生成和细胞凋亡。我们还表明,KBTBD泛素连接酶家族中的女性生育因子KBTBD8通过包括Erk1/2和Aurora A激酶作为中间体的信号级联反应选择性地调节PKM1水平。最后,通过RNA测序和蛋白质网络分析,我们鉴定出几种可能调控成熟PKM1 mRNA生成的调节蛋白。这些结果表明,KBTBD8通过KBTBD8→Erk1/2→Aurora A轴影响卵母细胞中的PKM1水平,并且可能还会影响维持卵母细胞质量所涉及的其他重要过程。