Laboratory of Cellular and Developmental Biology, NIDDK, National Institutes of Health, Bethesda, MD 20892, USA.
Nucleic Acids Res. 2023 Apr 24;51(7):3078-3093. doi: 10.1093/nar/gkad061.
During oocyte development in mice, transcripts accumulate in the growth phase and are subsequently degraded during maturation. At the transition point between growth and maturation, oocytes have an intact nucleus or germinal vesicle (GV), and terminal uridylation labels RNA for degradation in meiosis I. By profiling the transcriptome using single-oocyte long-read PacBio RNA sequencing, we document that a small cohort of mRNAs are polyadenylated after terminal uridylation in GV oocytes [designated uridylated-poly(A) RNA]. Because DIS3L2 ribonuclease is known to degrade uridylated transcripts, we established oocyte-specific Dis3l2 knockout mice (Dis3l2cKO). Upon DIS3L2 depletion, uridylated-poly(A) RNAs remain intact which increases their abundance, and they predominate in the transcriptome of Dis3l2cKO oocytes. The abundance of uridylated-poly(A) RNA in Dis3l2cKO oocytes arises not only from insufficient degradation, but also from the stabilizing effect of subsequent polyadenylation. Uridylated-poly(A) RNAs have shorter poly(A) tails and their translation activity decreases in Dis3l2cKO oocytes. Almost all Dis3l2cKO oocytes arrest at the GV stage, and female mice are infertile. Our study demonstrates multiple fates for RNA after terminal uridylation and highlights the role of DIS3L2 ribonuclease in safeguarding the transcriptome and ensuring female fertility.
在小鼠卵母细胞发育过程中,转录本在生长阶段积累,随后在成熟过程中降解。在生长和成熟之间的过渡点,卵母细胞具有完整的核或生发泡(GV),并且末端尿苷酰化将 RNA 标记为在减数分裂 I 中降解。通过使用单个卵母细胞长读长 PacBio RNA 测序对转录组进行分析,我们记录了一小部分 mRNA 在 GV 卵母细胞中在末端尿苷酰化后进行多聚腺苷酸化[命名为尿苷酸化多(A)RNA]。由于已知 DIS3L2 核糖核酸酶降解尿苷酸化的转录本,我们建立了卵母细胞特异性 Dis3l2 敲除小鼠(Dis3l2cKO)。在 DIS3L2 耗尽后,尿苷酸化多(A)RNA 保持完整,其丰度增加,并且在 Dis3l2cKO 卵母细胞的转录组中占主导地位。Dis3l2cKO 卵母细胞中尿苷酸化多(A)RNA 的丰度不仅源于不足的降解,还源于随后多聚腺苷酸化的稳定作用。尿苷酸化多(A)RNA 的多聚(A)尾较短,其翻译活性在 Dis3l2cKO 卵母细胞中降低。几乎所有 Dis3l2cKO 卵母细胞都停滞在 GV 阶段,雌性小鼠不育。我们的研究表明,末端尿苷酰化后 RNA 有多种命运,并强调了 DIS3L2 核糖核酸酶在保护转录组和确保雌性生育能力方面的作用。