Publication: Mutations in the Gene Encoding IFT Dynein Complex Component WDR34 Cause Jeune Asphyxiating Thoracic Dystrophy
| dc.contributor.author | ELÇİOĞLU, HURİYE NURSEL | |
| dc.contributor.authors | Schmidts, Miriam; Vodopiutz, Julia; Christou-Savina, Sonia; Cortes, Claudio R.; McInerney-Leo, Aideen M.; Emes, Richard D.; Arts, Heleen H.; Tuysuz, Beyhan; D'Silva, Jason; Leo, Paul J.; Giles, Tom C.; Oud, Machteld M.; Harris, Jessica A.; Koopmans, Marije; Marshall, Mhairi; Elcioglu, Nursel; Kuechler, Alma; Bockenhauer, Detlef; Moore, Anthony T.; Wilson, Louise C.; Janecke, Andreas R.; Hurles, Matthew E.; Emmet, Warren; Gardiner, Brooke; Streubel, Berthold; Dopita, Belinda; Zankl, Andreas; Kayserili, Hulya; Scambler, Peter J.; Brown, Matthew A.; Beales, Philip L.; Wicking, Carol; Duncan, Emma L.; Mitchison, Hannah M. | |
| dc.date.accessioned | 2022-03-14T10:56:35Z | |
| dc.date.accessioned | 2026-01-11T17:27:58Z | |
| dc.date.available | 2022-03-14T10:56:35Z | |
| dc.date.issued | 2013-11 | |
| dc.description.abstract | Bidirectional (anterograde and retrograde) motor-based intraflagellar transport (IFT) governs cargo transport and delivery processes that are essential for primary cilia growth and maintenance and for hedgehog signaling functions. The IFT dynein-2 motor complex that regulates ciliary retrograde protein transport contains a heavy chain dynein ATPase/motor subunit, DYNC2H1, along with other less well functionally defined subunits. Deficiency of IFT proteins, including DYNC2H1, underlies a spectrum of skeletal ciliopathies. Here, by using exome sequencing and a targeted next-generation sequencing panel, we identified a total of 11 mutations in WDR34 in 9 families with the clinical diagnosis of Jeune syndrome (asphyxiating thoracic dystrophy). WDR34 encodes a WD40 repeat-containing protein orthologous to Chlamydomonas FAP133, a dynein intermediate chain associated with the retrograde intraflagellar transport motor. Three-dimensional protein modeling suggests that the identified mutations all affect residues critical for WDR34 protein-protein interactions. We find that WDR34 concentrates around the centrioles and basal bodies in mammalian cells, also showing axonemal staining. WDR34 coimmunoprecipitates with the dynein-1 light chain DYNLL1 in vitro, and mining of proteomics data suggests that WDR34 could represent a previously unrecognized link between the cytoplasmic dynein-1 and IFT dynein-2 motors. Together, these data show that WDR34 is critical for ciliary functions essential to normal development and survival, most probably as a previously unrecognized component of the mammalian dynein-IFT machinery. | |
| dc.identifier.doi | 10.1016/j.ajhg.2013.10.003 | |
| dc.identifier.eissn | 1537-6605 | |
| dc.identifier.issn | 0002-9297 | |
| dc.identifier.pubmed | 24183451 | |
| dc.identifier.uri | https://hdl.handle.net/11424/245543 | |
| dc.identifier.wos | WOS:000326996600014 | |
| dc.language.iso | eng | |
| dc.publisher | CELL PRESS | |
| dc.relation.ispartof | AMERICAN JOURNAL OF HUMAN GENETICS | |
| dc.rights | info:eu-repo/semantics/openAccess | |
| dc.subject | RETROGRADE INTRAFLAGELLAR TRANSPORT | |
| dc.subject | RIB-POLYDACTYLY SYNDROME | |
| dc.subject | DNA-SEQUENCING DATA | |
| dc.subject | VERTEBRATE PHOTORECEPTORS | |
| dc.subject | CYTOPLASMIC DYNEIN-2 | |
| dc.subject | DYNC2H1 MUTATIONS | |
| dc.subject | OUTER SEGMENT | |
| dc.subject | PRIMARY CILIA | |
| dc.subject | PROTEIN | |
| dc.subject | CILIOPATHIES | |
| dc.title | Mutations in the Gene Encoding IFT Dynein Complex Component WDR34 Cause Jeune Asphyxiating Thoracic Dystrophy | |
| dc.type | article | |
| dspace.entity.type | Publication | |
| oaire.citation.endPage | 944 | |
| oaire.citation.issue | 5 | |
| oaire.citation.startPage | 932 | |
| oaire.citation.title | AMERICAN JOURNAL OF HUMAN GENETICS | |
| oaire.citation.volume | 93 |
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