Overexpression of Let-7a Mitigates Diploidization in Mouse Androgenetic Haploid Embryonic Stem Cells
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https://www.ncbi.nlm.nih.gov/sra/SRP480352
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Mouse androgenetic haploid embryonic stem cells (mAG-haESCs) can be utilized to uncover gene functions, especially those of genes with recessive effects, and to produce semicloned mice when injected into mature oocytes. However, mouse haploid cells undergo rapid diploidization during long-term culture in vitro and subsequently lose the advantages of haploidy and the factors that drive diploidization are not well understood. In this study, we compared the small RNAs (sRNAs) of mAG-haESCs, normal ESCs and mouse round spermatids by high-throughput sequencing and identified distinct sRNA profiles. Several let-7 family members and miR-290-295 cluster miRNAs were found significantly differentially transcribed. Knockdown and overexpression experiments showed that let-7a and let-7g suppress diploidization while miR-290a facilitates diploidization. Our study revealed the unique sRNA profile of mAG-haESCs and demonstrated that let-7a overexpression can mitigate diploidization in mAG-haESCs. These findings will help us to better understand mAG-haESCs and utilize them as a tool in the future. Overall design: To investigate small RNA profile of mouse androgenetci embryonic stem cells, we constructed small RNA libraries of R1, mouse spermatids, and three mouse androgenetic embryonic stem cell lines for analyses and comparison
创建时间:
2024-01-30



