TUBB4Bvariants specifically impact ciliary function, causing a ciliopathic spectrum
Author:
Mechaussier Sabrina, Dodd Daniel OORCID, Yeyati Patricia LORCID, McPhie FraserORCID, Attard Thomas, Shoemark AmeliaORCID, Gupta Deepesh K, Zariwala Maimoona AORCID, Legendre MarieORCID, Bracht Diana, Wallmeier JuliaORCID, Gui MiaoORCID, Anderson Jacob RORCID, Fassad Mahmoud RORCID, Parry David AORCID, Tennant Peter AORCID, Meynert AlisonORCID, Wheway GabrielleORCID, Fares-Taie LucasORCID, Black Holly A, Mitri-Frangieh Rana, Faucon Catherine, Kaplan JosselineORCID, Patel Mitali, McKie Lisa, Megaw RolyORCID, Gatsogiannis ChristosORCID, Mohamed Mai A, Aitken Stuart, Gautier PhilippeORCID, Reinholt Finn R, Hirst Robert AORCID, O’Callaghan Chris, Heimdal KetilORCID, Bottier MathieuORCID, Escudier EstelleORCID, Crowley SuzanneORCID, Descartes Maria, Jabs Ethylin WORCID, Kenia Priti, Amiel JeanneORCID, Blümlein Ulrike, Rogers Andrew, Wambach Jennifer AORCID, Wegner Daniel J, Fulton Anne B, Kenna Margaret, Rosenfeld MargaretORCID, Holm Ingrid AORCID, Quigley Alan, Cassidy Diana M, von Kriegsheim AlexORCID, Papon Jean-Francois, Pasquier LaurentORCID, Murris Marlène S, Chalmers James D, Hogg ClareORCID, Macleod Kenneth, Urquhart Don S, Unger Stefan, Aitman Timothy JORCID, Amselem SergeORCID, Rozet Jean-MichelORCID, Amselem SergeORCID, Leigh Margaret WORCID, Knowles Michael R., Omran HeymutORCID, Mitchison Hannah MORCID, Brown AlanORCID, Marsh Joseph AORCID, Welburn Julie P IORCID, Horani AmjadORCID, Rozet Jean-MichelORCID, Perrault IsabelleORCID, Mill PleasantineORCID, , ,
Abstract
AbstractCilia are small microtubule-based structures found on the surface of most mammalian cells, which have key sensory and sometimes motile functions. Primary ciliary dyskinesia (PCD) is a type of ciliopathy caused by defects in motile cilia. The genetic basis of PCD is only partially understood. Studying a cohort of 11 human patients with PCD, we find thatde novomutations inTUBB4B, a beta tubulin isotype, cause three distinct classes of ciliopathic disease.In vivostudies in mice show thatTubb4bplays a specific role in cilia, building centrioles and axonemes in multiciliated cells. Examining the effects of specific TUBB4B variants in cells and in mice, we further demonstrate that distinctTUBB4Bmutations differentially affect microtubule dynamics and cilia formation in a dominant negative manner. Finally, structure-function studies reveal that different TUBB4B mutations disrupt distinct tubulin interfaces. Importantly, these molecular differences correlate with disease features. We show that tubulin heterodimer-impairing TUBB4B variants underlie nonsyndromic PCD, whilst additional renal and sensorineural ciliopathic features in a syndromic PCD subtype arise from microtubule lumenal interface-impaired TUBB4B variants. These findings suggest that specific tubulin isotypes have distinct and non-redundant subcellular functions, and demonstrate that human tubulinopathies can be drivers of ciliopathic syndromes.
Publisher
Cold Spring Harbor Laboratory
Cited by
8 articles.
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