Single-oocyte full-length isoform sequencing unveils the impact of transposable elements on RNA diversity and stability

基因亚型 生物 卵母细胞 转座因子 遗传学 计算生物学 基因 基因敲除 核糖核酸 转录组 细胞生物学 RNA序列 信使核糖核酸 现象 小RNA
作者
Yuqian Wang,Wei Wang,Yu Liu,Yiming He,Hongyu Song,Ming Yang,N Wang,Xiaomeng Wang,Li Ding,Ying Kuo,Yuwen Xiu,Zhengrong Du,Lu Chen,Ying Lian,Qiang Liu,Liying Yan,J. Qiao,Peng Yuan
出处
期刊:Nature Communications [Nature Portfolio]
卷期号:17 (1)
标识
DOI:10.1038/s41467-026-71425-9
摘要

Oocyte-specific isoforms play crucial roles in oocyte maturation, while current understanding of the oocyte transcriptome is mainly focused on gene level. Here, we utilize single-cell full-length isoform sequencing to detect entire transcripts in human and mouse oocytes. Isoform diversity during oocyte maturation is systematically profiled, including 7154 and 4875 putative novel human and mouse transcripts, respectively. More than half of novel isoforms are categorized as novel-not-in-catalog (NNC) and may serve specific functions in oocytes. For example, ARHGAP18 mainly encoded by novel isoforms colocalizes with microtubules, and targeted knockdown of novel isoforms disrupts oocyte maturation. Moreover, approximately 30% of NNC isoforms are derived from transposable elements, and their incorporation within transcripts could enhance isoform stability during oocyte maturation. Altogether, our findings represent a valuable resource showcasing the complexity and diversity of RNA isoforms in oocytes, as well as transposable element co-option for novel isoform generation and isoform stability enhancement. Oocyte-specific isoforms play crucial roles in oocyte maturation. This study utilizes single-cell full-length isoform sequencing to unveil the diversity of RNA isoforms, as well as TE co-option for novel isoform generation and isoform stability during human and mouse oocyte maturation.
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