ketu mutant mice uncover an essential meiotic function for the ancient RNA helicase YTHDC2

Author:

Jain Devanshi1ORCID,Puno M Rhyan23,Meydan Cem45,Lailler Nathalie6,Mason Christopher E457,Lima Christopher D23ORCID,Anderson Kathryn V8,Keeney Scott13ORCID

Affiliation:

1. Molecular Biology Program, Memorial Sloan Kettering Cancer Center, New York, United States

2. Structural Biology Program, Memorial Sloan Kettering Cancer Center, New York, United States

3. Howard Hughes Medical Institute, Memorial Sloan Kettering Cancer Center, New York, United States

4. Department of Physiology and Biophysics, Weill Cornell Medicine, New York, United States

5. The HRH Prince Alwaleed Bin Talal Bin Abdulaziz Alsaud Institute for Computational Biomedicine, Weill Cornell Medicine, New York, United States

6. Integrated Genomics Operation, Memorial Sloan Kettering Cancer Center, New York, United States

7. The Feil Family Brain and Mind Research Institute, Weill Cornell Medicine, New York, United States

8. Developmental Biology Program, Memorial Sloan Kettering Cancer Center, New York, United States

Abstract

Mechanisms regulating mammalian meiotic progression are poorly understood. Here we identify mouse YTHDC2 as a critical component. A screen yielded a sterile mutant, ‘ketu’, caused by a Ythdc2 missense mutation. Mutant germ cells enter meiosis but proceed prematurely to aberrant metaphase and apoptosis, and display defects in transitioning from spermatogonial to meiotic gene expression programs. ketu phenocopies mutants lacking MEIOC, a YTHDC2 partner. Consistent with roles in post-transcriptional regulation, YTHDC2 is cytoplasmic, has 3′→5′ RNA helicase activity in vitro, and has similarity within its YTH domain to an N6-methyladenosine recognition pocket. Orthologs are present throughout metazoans, but are diverged in nematodes and, more dramatically, Drosophilidae, where Bgcn is descended from a Ythdc2 gene duplication. We also uncover similarity between MEIOC and Bam, a Bgcn partner unique to schizophoran flies. We propose that regulation of gene expression by YTHDC2-MEIOC is an evolutionarily ancient strategy for controlling the germline transition into meiosis.

Funder

Howard Hughes Medical Institute

Eunice Kennedy Shriver National Institute of Child Health and Human Development

Human Frontier Science Program

National Cancer Institute

National Institute of General Medical Sciences

Starr Cancer Consortium

Bert L and N Kuggie Vallee Foundation

WorldQuant Foundation

Pershing Square Sohn Cancer Research Alliance

National Aeronautics and Space Administration

Bill and Melinda Gates Foundation

Cycle for Survival

Marie-Josée and Henry R. Kravis Center for Molecular Oncology

Publisher

eLife Sciences Publications, Ltd

Subject

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

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