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在 中,早期基因激活是广泛存在的,最初表现为转录本流产和内含子保留。

Early genome activation in is extensive with an initial tendency for aborted transcripts and retained introns.

机构信息

Howard Hughes Medical Institute, Whitehead Institute for Biomedical Research, Cambridge, Massachusetts 02142, USA.

Department of Biology, Massachusetts Institute of Technology, Cambridge, Massachusetts 02139, USA.

出版信息

Genome Res. 2019 Jul;29(7):1188-1197. doi: 10.1101/gr.242164.118. Epub 2019 Jun 24.

Abstract

Control of metazoan embryogenesis shifts from maternal to zygotic gene products as the zygotic genome becomes transcriptionally activated. In , zygotic genome activation (ZGA) has been thought to occur in two phases, starting with a minor wave, in which a small number of genes become expressed, and progressing to the major wave, in which many more genes are activated. However, technical challenges have hampered the identification of early transcripts or obscured the onset of their transcription. Here, we develop an approach to isolate transcribed mRNAs and apply it over the course of early genome activation. Our results increase by 10-fold the genes reported to be activated during what has been thought of as the minor wave and show that early genome activation is continuous and gradual. Transposable-element mRNAs are also produced, but discontinuously. Genes transcribed in the early and middle part of ZGA are short with few if any introns, and their transcripts are frequently aborted and tend to have retained introns, suggesting that inefficient splicing as well as rapid cell divisions constrain the lengths of early transcripts.

摘要

随着合子基因组转录激活,后生动物胚胎发生的调控从母体基因产物转移到合子基因产物。在 ,合子基因组激活 (ZGA) 被认为分为两个阶段,首先是一个小的波,少数基因开始表达,然后是一个大的波,更多的基因被激活。然而,技术挑战阻碍了早期转录本的鉴定或掩盖了它们转录的开始。在这里,我们开发了一种分离转录 mRNA 的方法,并在早期基因组激活过程中进行了应用。我们的结果将被认为是在小波期间被激活的基因数量增加了 10 倍,并表明早期基因组激活是连续的和渐进的。转座元件的 mRNA 也被产生,但不连续。在 ZGA 的早期和中期转录的基因较短,几乎没有内含子,如果有的话,它们的转录本经常被截断,并且往往保留内含子,这表明低效的剪接以及快速的细胞分裂限制了早期转录本的长度。

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