LRRC23 truncation impairs radial spoke 3 head assembly and sperm motility underlying male infertility

Author:

Hwang Jae Yeon12ORCID,Chai Pengxin3,Nawaz Shoaib4,Choi Jungmin56ORCID,Lopez-Giraldez Francesc7,Hussain Shabir8,Bilguvar Kaya57,Mane Shrikant6,Lifton Richard P9,Ahmad Wasim48,Zhang Kai3,Chung Jean-Ju110ORCID

Affiliation:

1. Department of Cellular and Molecular Physiology, Yale School of Medicine, Yale University

2. Department of Molecular Biology, Pusan National University

3. Department of Molecular Biophysics and Biochemistry, Yale School of Medicine, Yale University

4. Department of Biotechnology, Faculty of BiologicalSciences, Quaid-i-Azam University

5. Department of Genetics, YaleSchool of Medicine, Yale University

6. Department of Biomedical Sciences, Korea University College of Medicine

7. Yale Center forGenome Analysis, Yale University

8. Department of Biochemistry, Faculty of Biological Sciences, Quaid-i-Azam University

9. Laboratory of Human Genetics and Genomics, The Rockefeller University

10. Department of Obstetrics, Gynecology and Reproductive Sciences, Yale School of Medicine, Yale University

Abstract

Radial spokes (RS) are T-shaped multiprotein complexes on the axonemal microtubules. Repeated RS1, RS2, and RS3 couple the central pair to modulate ciliary and flagellar motility. Despite the cell type specificity of RS3 substructures, their molecular components remain largely unknown. Here, we report that a leucine-rich repeat-containing protein, LRRC23, is an RS3 head component essential for its head assembly and flagellar motility in mammalian spermatozoa. From infertile male patients with defective sperm motility, we identified a splice site variant of LRRC23. A mutant mouse model mimicking this variant produces a truncated LRRC23 at the C-terminus that fails to localize to the sperm tail, causing male infertility due to defective sperm motility. LRRC23 was previously proposed to be an ortholog of the RS stalk protein RSP15. However, we found that purified recombinant LRRC23 interacts with an RS head protein RSPH9, which is abolished by the C-terminal truncation. Evolutionary and structural comparison also shows that LRRC34, not LRRC23, is the RSP15 ortholog. Cryo-electron tomography clearly revealed that the absence of the RS3 head and the sperm-specific RS2-RS3 bridge structure in LRRC23 mutant spermatozoa. Our study provides new insights into the structure and function of RS3 in mammalian spermatozoa and the molecular pathogenicity of LRRC23 underlying reduced sperm motility in infertile human males.

Funder

Yale University

National Institutes of Health

Pakistan Academy of Sciences

Publisher

eLife Sciences Publications, Ltd

Subject

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

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