Microhomology-mediated circular DNA formation from oligonucleosomal fragments during spermatogenesis

Author:

Hu Jun1,Zhang Zhe2,Xiao Sai3,Cao Yalei2,Chen Yinghong3,Weng Jiaming2,Jiang Hui24,Li Wei35,Chen Jia-Yu16ORCID,Liu Chao35

Affiliation:

1. State Key Laboratory of Pharmaceutical Biotechnology, School of Life Sciences, Chemistry and Biomedicine Innovation Center (ChemBIC), Department of Andrology, Nanjing Drum Tower Hospital, Nanjing University

2. Department of Urology, Department of Reproductive Medicine Center, Peking University Third Hospital

3. Guangzhou Women and Children's Medical Center, Guangzhou Medical University

4. Department of Urology, Peking University First Hospital Institute of Urology

5. State Key Laboratory of Stem Cell and Reproductive Biology, Institute of Zoology, Stem Cell and Regenerative Medicine Innovation Institute, Chinese Academy of Science

6. Nanchuang (Jiangsu) Institute of Chemistry and Health

Abstract

The landscape of extrachromosomal circular DNA (eccDNA) during mammalian spermatogenesis, as well as the biogenesis mechanism, remains to be explored. Here, we revealed widespread eccDNA formation in human sperms and mouse spermatogenesis. We noted that germline eccDNAs are derived from oligonucleosomal DNA fragmentation in cells likely undergoing cell death, providing a potential new way for quality assessment of human sperms. Interestingly, small-sized eccDNAs are associated with euchromatin, while large-sized ones are preferentially generated from heterochromatin. By comparing sperm eccDNAs with meiotic recombination hotspots and structural variations, we found that they are barely associated with de novo germline deletions. We further developed a bioinformatics pipeline to achieve nucleotide-resolution eccDNA detection even with the presence of microhomologous sequences that interfere with precise breakpoint identification. Empowered by our method, we provided strong evidence to show that microhomology-mediated end joining is the major eccDNA biogenesis mechanism. Together, our results shed light on eccDNA biogenesis mechanism in mammalian germline cells.

Funder

Ministry of Science and Technology

National Natural Science Foundation of China

Publisher

eLife Sciences Publications, Ltd

Subject

General Immunology and Microbiology,General Biochemistry, Genetics and Molecular Biology,General Medicine,General Neuroscience

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