CFAP61 is required for sperm flagellum formation and male fertility in human and mouse

Author:

Liu Siyu1ORCID,Zhang Jintao1ORCID,Kherraf Zine Eddine23,Sun Shuya1ORCID,Zhang Xin1,Cazin Caroline23ORCID,Coutton Charles24,Zouari Raoudha5,Zhao Shuqin6,Hu Fan7,Fourati Ben Mustapha Selima5ORCID,Arnoult Christophe2,Ray Pierre F.23ORCID,Liu Mingxi1ORCID

Affiliation:

1. State Key Laboratory of Reproductive Medicine, Department of Histology and Embryology, School of Basic Medical Sciences, Nanjing Medical University, Nanjing, 211166, China

2. Univ. Grenoble Alpes, INSERM U1209, CNRS UMR 5309, Institute for Advanced Biosciences, Team Genetics Epigenetics and Therapies of Infertility, Grenoble, F-38000, France

3. CHU de Grenoble, UM GI-DPI, Grenoble, F-38000, France

4. CHU de Grenoble, UM de Génétique Chromosomique, Grenoble, F-38000, France

5. Polyclinique les Jasmins, Centre d'Aide Médicale à la Procréation, Centre Urbain Nord, 1003 Tunis, Tunisia

6. State Key Laboratory of Reproductive Medicine, Animal Core Facility of Nanjing Medical University, Nanjing 211166, China

7. State Key Laboratory of Reproductive Medicine, Nanjing Medical University, Nanjing, 211166, China

Abstract

ABSTRACT Defects in the structure or motility of cilia and flagella may lead to severe diseases such as primary ciliary dyskinesia (PCD), a multisystemic disorder with heterogeneous manifestations affecting primarily respiratory and reproductive functions. We report that CFAP61 is a conserved component of the calmodulin- and radial spoke-associated complex (CSC) of cilia. We find that a CFAP61 splice variant, c.143+5G>A, causes exon skipping/intron retention in human, inducing a multiple morphological abnormalities of the flagella (MMAF) phenotype. We generated Cfap61 knockout mice that recapitulate the infertility phenotype of the human CFAP61 mutation, but without other symptoms usually observed in PCD. We find that CFAP61 interacts with the CSC, radial spoke stalk and head. During early stages of Cfap61−/− spermatid development, the assembly of radial spoke components is impaired. As spermiogenesis progresses, the axoneme in Cfap61−/− cells becomes unstable and scatters, and the distribution of intraflagellar transport proteins is disrupted. This study reveals an organ-specific mechanism of axoneme stabilization that is related to male infertility.

Funder

National Key Research and Development Program of China

Natural Science Foundation of China

Natural Science Foundation of Jiangsu Province

Qinglan Project of Jiangsu Province of China

Agence National de la Recherche

Publisher

The Company of Biologists

Subject

Developmental Biology,Molecular Biology

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