Single-cell transcriptome and translatome dual-omics reveals potential mechanisms of human oocyte maturation

Wenqi Hu(Tsinghua University), Haitao Zeng(Sun Yat-sen University), Yanan Shi(Sun Yat-sen University), Chuanchuan Zhou(Sun Yat-sen University), Jiana Huang(Sun Yat-sen University), Lei Jia(Sun Yat-sen University), Siqi Xu(Tsinghua University), Xiaoyu Feng(Tsinghua University), Yanyan Zeng(Sun Yat-sen University), Tuanlin Xiong(Center for Life Sciences), Wenze Huang(Center for Life Sciences), Peng Sun(Sun Yat-sen University), Yajie Chang(Sun Yat-sen University), Tingting Li(Sun Yat-sen University), Cong Fang(Sun Yat-sen University), Keliang Wu(Shandong University), Lingbo Cai(Nanjing Medical University), Wuhua Ni(Wenzhou Medical University), Yan Li(Wenzhou Medical University), Zhi-Yong Yang(Tongji University), Qiangfeng Cliff Zhang(Center for Life Sciences), Ri‐Cheng Chian(Tongji University), Zi‐Jiang Chen(Shandong University), Xiaoyan Liang(Sun Yat-sen University), Kehkooi Kee(Tsinghua University)
Nature Communications
August 30, 2022
Cited by 128Open Access
Full Text

Abstract

The combined use of transcriptome and translatome as indicators of gene expression profiles is usually more accurate than the use of transcriptomes alone, especially in cell types governed by translational regulation, such as mammalian oocytes. Here, we developed a dual-omics methodology that includes both transcriptome and translatome sequencing (T&T-seq) of single-cell oocyte samples, and we used it to characterize the transcriptomes and translatomes during mouse and human oocyte maturation. T&T-seq analysis revealed distinct translational expression patterns between mouse and human oocytes and delineated a sequential gene expression regulation from the cytoplasm to the nucleus during human oocyte maturation. By these means, we also identified a functional role of OOSP2 inducing factor in human oocyte maturation, as human recombinant OOSP2 induced in vitro maturation of human oocytes, which was blocked by anti-OOSP2. Single-oocyte T&T-seq analyses further elucidated that OOSP2 induces specific signaling pathways, including small GTPases, through translational regulation.


Related Papers

No related papers found

Powered by citation graph analysis