Adenylate kinase 9 is essential for sperm function and male fertility in mammals

Author:

O’Callaghan Elena1,Navarrete-Lopez Paula2ORCID,Štiavnická Miriama3ORCID,Sánchez José M.12ORCID,Maroto Maria2,Pericuesta Eva2,Fernández-González Raul2ORCID,O’Meara Ciara4,Eivers Bernard4,Kelleher Margaret M.5,Evans Ross D.5,Mapel Xena M.6,Lloret-Villas Audald6ORCID,Pausch Hubert6ORCID,Balastegui-Alarcón Miriam7ORCID,Avilés Manuel7ORCID,Sanchez-Rodriguez Ana8,Roldan Eduardo R. S.8,McDonald Michael1ORCID,Kenny David A.9,Fair Sean3,Gutiérrez-Adán Alfonso2ORCID,Lonergan Patrick1ORCID

Affiliation:

1. Animal and Crop Sciences, School of Agriculture and Food Science, University College Dublin, Belfield, Dublin D04 V1W8, Ireland

2. Departamento de Reproducción Animal, Instituto Nacional de Investigación y Tecnología Agraria y Alimentaria-Centro Nacional integrado en la Agencia Estatal Consejo Superior de Investigaciones Científicas, Madrid 28040, Spain

3. Department of Biological Sciences, Bernal Institute, Faculty of Science and Engineering, University of Limerick, Limerick V94 T9PX, Ireland

4. National Cattle Breeding Centre, County Kildare W91 WF59, Ireland

5. Irish Cattle Breeding Federation, Link Road, Ballincollig, County Cork P31 D452, Ireland

6. Animal Genomics, Institute of Agricultural Sciences, ETH Zürich, Zürich 8092, Switzerland

7. Departamento de Biología Celular e Histología, Universidad de Murcia-Instituto Murciano de Investigación Biosanitaria Pascual Parrilla, Murcia 30120, Spain

8. Departmento de Biodiversidad y Biología Evolutiva, Museo Nacional de Ciencias Naturales, Madrid 28006, Spain

9. Animal and Bioscience Department, Teagasc, Animal and Grassland Research and Innovation Centre, Grange, Dunsany, County Meath C15 PW93, Ireland

Abstract

Despite passing routine laboratory tests for semen quality, bulls used in artificial insemination exhibit significant variation in fertility. Routine analysis of fertility data identified a dairy bull with extreme subfertility (10% pregnancy rate). To characterize the subfertility phenotype, a range of in vitro, in vivo, and molecular assays were carried out. Sperm from the subfertile bull exhibited reduced motility and severely reduced caffeine-induced hyperactivation compared to controls. Ability to penetrate the zona pellucida, cleavage rate, cleavage kinetics, and blastocyst yield after IVF or AI were significantly lower than in control bulls. Whole-genome sequencing from semen and RNA sequencing of testis tissue revealed a critical mutation in adenylate kinase 9 ( AK9 ) that impaired splicing, leading to a premature termination codon and a severely truncated protein. Mice deficient in AK9 were generated to further investigate the function of the gene; knockout males were phenotypically indistinguishable from their wild-type littermates but produced immotile sperm that were incapable of normal fertilization. These sperm exhibited numerous abnormalities, including a low ATP concentration and reduced motility. RNA-seq analysis of their testis revealed differential gene expression of components of the axoneme and sperm flagellum as well as steroid metabolic processes. Sperm ultrastructural analysis showed a high percentage of sperm with abnormal flagella. Combined bovine and murine data indicate the essential metabolic role of AK9 in sperm motility and/or hyperactivation, which in turn affects sperm binding and penetration of the zona pellucida. Thus, AK9 has been found to be directly implicated in impaired male fertility in mammals.

Publisher

Proceedings of the National Academy of Sciences

Subject

Multidisciplinary

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