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翻译组和转录组联合分析揭示了TPRXs在人类合子基因组激活中的作用。

Translatome and transcriptome co-profiling reveals a role of TPRXs in human zygotic genome activation.

作者信息

Zou Zhuoning, Zhang Chuanxin, Wang Qiuyan, Hou Zhenzhen, Xiong Zhuqing, Kong Feng, Wang Qiujun, Song Jinzhu, Liu Boyang, Liu Bofeng, Wang Lijuan, Lai Fangnong, Fan Qiang, Tao Wenrong, Zhao Shuai, Ma Xiaonan, Li Miao, Wu Keliang, Zhao Han, Chen Zi-Jiang, Xie Wei

机构信息

Center for Stem Cell Biology and Regenerative Medicine, MOE Key Laboratory of Bioinformatics, School of Life Sciences, Tsinghua University, Beijing 100084, China.

Tsinghua-Peking Center for Life Sciences, Tsinghua University, Beijing 100084, China.

出版信息

Science. 2022 Oct 7;378(6615):abo7923. doi: 10.1126/science.abo7923.

Abstract

Translational regulation plays a critical role during the oocyte-to-embryo transition (OET) and zygotic genome activation (ZGA). Here, we integrated ultra-low-input ribosome profiling (Ribo-lite) with messenger RNA sequencing to co-profile the translatome and transcriptome in human oocytes and early embryos. Comparison with mouse counterparts identified widespread differentially translated gene functioning in epigenetic reprogramming, transposon defense, and small RNA biogenesis, in part driven by species-specific regulatory elements in 3' untranslated regions. Moreover, PRD-like homeobox transcription factors, including , , and , are highly translated around ZGA. knockdown leads to defective ZGA and preimplantation development. Ectopically expressed TPRXs bind and activate key ZGA genes in human embryonic stem cells. These data reveal the conservation and divergence of translation landscapes during OET and identify critical regulators of human ZGA.

摘要

翻译调控在卵母细胞向胚胎转变(OET)和合子基因组激活(ZGA)过程中起着关键作用。在此,我们将超低输入核糖体谱分析(Ribo-lite)与信使RNA测序相结合,以共同分析人类卵母细胞和早期胚胎中的翻译组和转录组。与小鼠对应物的比较确定了在表观遗传重编程、转座子防御和小RNA生物合成中广泛存在差异翻译的基因功能,部分是由3'非翻译区的物种特异性调控元件驱动的。此外,PRD样同源框转录因子,包括[此处原文缺失具体因子名称],在ZGA前后高度翻译。[此处原文缺失具体因子名称]敲低导致ZGA缺陷和植入前发育异常。异位表达的TPRXs在人类胚胎干细胞中结合并激活关键的ZGA基因。这些数据揭示了OET期间翻译图谱的保守性和差异性,并确定了人类ZGA的关键调节因子。

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