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Pig‐specific RNA editing during early embryo development revealed by genome‐wide comparisons

机译:通过基因组 - 范围的比较揭示了早期胚胎发育的猪特异性RNA编辑

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Posttranscriptional modification of mRNA sequences through RNA editing can increase transcriptome and proteome diversity in eukaryotes. Studies of fetal and adult tissues showed that adenosine‐to‐inosine RNA editing plays a crucial role in early human development, but there is a lack of global understanding of dynamic RNA editing during mammalian early embryonic development. Therefore, here we used RNA sequencing data from human, pig and mouse during early embryonic development to detect edited genes that may regulate stem cell pluripotency. We observed that although most of the RNA editing sites are located in intergenic, intron and UTR, a few editing sites are in coding regions and may result in nonsynonymous amino acid changes. Some editing sites are predicted to change the structure of a protein. We also report that HNF1A , TBX3 , ACLY , ECI1 and ERDR1 are related to embryonic development and cell division.
机译:通过RNA编辑的mRNA序列的后谱系修正可以增加真核生物中的转录组和蛋白质组多样性。对胎儿和成人组织的研究表明,腺苷对肌氨酸的RNA编辑在早期人类发展中起着至关重要的作用,但在哺乳动物早期胚胎发育过程中缺乏全球对动态RNA编辑的理解。因此,在此,我们在早期胚胎发育期间使用来自人,猪和小鼠的RNA测序数据以检测可能调节干细胞多能性的编辑基因。我们观察到,尽管大多数RNA编辑位点位于亚因子,内含子和UTR中,但是一些编辑位点处于编码区中,并且可能导致非纯氨基酸的变化。预计一些编辑网站可以改变蛋白质的结构。我们还报告说,HNF1A,TBX3,普通,ECI1和ERDR1与胚胎发育和细胞分裂有关。

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