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Calaxin stabilizes the docking of outer arm dyneins onto ciliary doublet microtubule in vertebrates

2022-11-12

Abstract excerpt

Outer arm dynein (OAD) is the main force generator of ciliary beating. Although OAD loss is the most frequent cause of human primary ciliary dyskinesia, the docking mechanism of OAD onto the ciliary doublet microtubule (DMT) remains elusive in vertebrates. Here, we analyzed the functions of Calaxin/Efcab1 and Armc4, the components of vertebrate OAD-DC (docking complex), using zebrafish spermatozoa and cryo-electro...

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Identifiers and source

Literature Corpus work
56043646-169b-568b-ac38-ee099dec63fc
DOI
10.1101/2022.11.10.516068
Open publication

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Calaxin stabilizes the docking of outer arm dyneins onto ciliary doublet microtubule in vertebratesDOI 10.1101/2022.11.10.516068
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