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在果蝇中,Nanos 广泛调节母本转录组。

Widespread regulation of the maternal transcriptome by Nanos in Drosophila.

机构信息

Department of Molecular Genetics, Department of Cancer Biology and Genetics, Center for RNA Biology, Ohio State University, Columbus, Ohio, United States of America.

出版信息

PLoS Biol. 2024 Oct 14;22(10):e3002840. doi: 10.1371/journal.pbio.3002840. eCollection 2024 Oct.

Abstract

The translational repressor Nanos (Nos) regulates a single target, maternal hunchback (hb) mRNA, to govern abdominal segmentation in the early Drosophila embryo. Nos is recruited to sites in the 3' UTR of hb mRNA in collaboration with the sequence-specific RNA-binding protein Pumilio (Pum); on its own, Nos has no binding specificity. Nos is expressed at other stages of development, but very few mRNA targets that might mediate its action at these stages have been described. Nor has it been clear whether Nos is targeted to other mRNAs in concert with Pum or via other mechanisms. In this report, we identify mRNAs targeted by Nos via 2 approaches. First, we identify mRNAs depleted upon expression of a chimera bearing Nos fused to the nonsense mediated decay (NMD) factor Upf1. We find that, in addition to hb, Upf1-Nos depletes approximately 2,600 mRNAs from the maternal transcriptome in early embryos. Virtually all of these appear to be targeted in a canonical, hb-like manner in concert with Pum. In a second, more conventional approach, we identify mRNAs that are stabilized during the maternal zygotic transition (MZT) in embryos from nos- females. Most (86%) of the 1,185 mRNAs regulated by Nos are also targeted by Upf1-Nos, validating use of the chimera. Previous work has shown that 60% of the maternal transcriptome is degraded in early embryos. We find that maternal mRNAs targeted by Upf1-Nos are hypoadenylated and inefficiently translated at the ovary-embryo transition; they are subsequently degraded in the early embryo, accounting for 59% of all destabilized maternal mRNAs. We suggest that the late ovarian burst of Nos represses a large fraction of the maternal transcriptome, priming it for later degradation by other factors in the embryo.

摘要

翻译抑制因子 Nanos(Nos)调控单一靶标,母体 hunchback(hb)mRNA,以控制早期果蝇胚胎的腹部分段。Nos 与序列特异性 RNA 结合蛋白 Pumilio(Pum)合作,招募到 hb mRNA 的 3'UTR 中;单独使用时,Nos 没有结合特异性。Nos 在发育的其他阶段表达,但很少有描述可能介导其作用的 mRNA 靶标。也不清楚 Nos 是否与 Pum 一起靶向其他 mRNA,还是通过其他机制。在本报告中,我们通过 2 种方法鉴定了 Nos 靶向的 mRNA。首先,我们鉴定了表达带有融合到无意义介导的衰变(NMD)因子 Upf1 的 Nos 嵌合体后缺失的 mRNA。我们发现,除了 hb 之外,Upf1-Nos 还从早期胚胎中的母体转录本中消耗了大约 2600 个 mRNA。几乎所有这些似乎都以与 Pum 协同的典型 hb 样方式靶向。在第二种更传统的方法中,我们鉴定了在 nos- 雌性胚胎中的母体合子过渡(MZT)期间稳定的 mRNA。在 Nos 调控的 1185 个 mRNA 中,大多数(86%)也被 Upf1-Nos 靶向,验证了嵌合体的使用。以前的工作表明,早期胚胎中有 60%的母体转录本降解。我们发现,Upf1-Nos 靶向的母体 mRNA 低腺苷酸化,在卵巢-胚胎过渡时翻译效率低下;它们随后在早期胚胎中降解,占所有不稳定的母体 mRNA 的 59%。我们认为,晚期卵巢中 Nos 的爆发抑制了母体转录本的很大一部分,为胚胎中其他因素的后续降解做好了准备。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9943/11501031/b358685c5e92/pbio.3002840.g001.jpg

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