CFAP45 deficiency causes situs abnormalities and asthenospermia by disrupting an axonemal adenine nucleotide homeostasis module
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Published:2020-11-02
Issue:1
Volume:11
Page:
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ISSN:2041-1723
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Container-title:Nature Communications
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language:en
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Short-container-title:Nat Commun
Author:
Dougherty Gerard W., Mizuno KatsutoshiORCID, Nöthe-Menchen Tabea, Ikawa Yayoi, Boldt KarstenORCID, Ta-Shma AsafORCID, Aprea Isabella, Minegishi Katsura, Pang Yuan-PingORCID, Pennekamp Petra, Loges Niki T., Raidt Johanna, Hjeij Rim, Wallmeier Julia, Mussaffi Huda, Perles Zeev, Elpeleg Orly, Rabert Franziska, Shiratori Hidetaka, Letteboer Stef J., Horn Nicola, Young SamuelORCID, Strünker Timo, Stumme Friederike, Werner Claudius, Olbrich Heike, Takaoka Katsuyoshi, Ide Takahiro, Twan Wang Kyaw, Biebach Luisa, Große-Onnebrink Jörg, Klinkenbusch Judith A., Praveen Kavita, Bracht Diana C., Höben Inga M., Junger Katrin, Gützlaff Jana, Cindrić SandraORCID, Aviram Micha, Kaiser Thomas, Memari Yasin, Dzeja Petras P., Dworniczak Bernd, Ueffing Marius, Roepman Ronald, Bartscherer Kerstin, Katsanis Nicholas, Davis Erica E.ORCID, Amirav IsraelORCID, Hamada Hiroshi, Omran HeymutORCID
Abstract
Abstract
Axonemal dynein ATPases direct ciliary and flagellar beating via adenosine triphosphate (ATP) hydrolysis. The modulatory effect of adenosine monophosphate (AMP) and adenosine diphosphate (ADP) on flagellar beating is not fully understood. Here, we describe a deficiency of cilia and flagella associated protein 45 (CFAP45) in humans and mice that presents a motile ciliopathy featuring situs inversus totalis and asthenospermia. CFAP45-deficient cilia and flagella show normal morphology and axonemal ultrastructure. Proteomic profiling links CFAP45 to an axonemal module including dynein ATPases and adenylate kinase as well as CFAP52, whose mutations cause a similar ciliopathy. CFAP45 binds AMP in vitro, consistent with structural modelling that identifies an AMP-binding interface between CFAP45 and AK8. Microtubule sliding of dyskinetic sperm from Cfap45−/− mice is rescued with the addition of either AMP or ADP with ATP, compared to ATP alone. We propose that CFAP45 supports mammalian ciliary and flagellar beating via an adenine nucleotide homeostasis module.
Publisher
Springer Science and Business Media LLC
Subject
General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry
Reference87 articles.
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