Mutations In Atp6V1E1 Or Atp6V1A Cause Autosomal-Recessive Cutis Laxa
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Tarih
2017Yazar
Van Damme, Tim
Gardeitchik, Thatjana
Mohamed, Miski
Guerrero-Castillo, Sergio
Freisinger, Peter
Guillemyn, Brecht
Kariminejad, Ariana
Dalloyaux, Daisy
Van Kraaij, Sanne
Lefeber, Dirk J.
Syx, Delfien
Steyaert, Wouter
De Rycke, Riet
Hoischen, Alexander
Kamsteeg, Erik-Jan
Wong, Sunnie Y.
van Scherpenzeel, Monique
Jamali, Payman
Brandt, Ulrich
Nijtmans, Leo
Korenke, G. Christoph
Chung, Brian H. Y.
Mak, Christopher C. Y.
Hausser, Ingrid
Kornak, Uwe
Fischer-Zirnsak, Bjorn
Strom, Tim M.
Meitinger, Thomas
Alanay, Yasemin
Utine, Gulen E.
Leung, Peter K. C.
Ghaderi-Sohi, Siavash
Coucke, Paul
Symoens, Sofie
De Paepe, Anne
Thiel, Christian
Haack, Tobias B.
Malfait, Fransiska
Morava, Eva
Callewaert, Bert
Wevers, Ron A.
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Defects of the V-type proton (H+) ATPase (V-ATPase) impair acidification and intracellular trafficking of membrane-enclosed compartments, including secretory granules, endosomes, and lysosomes. Whole-exome sequencing in five families affected by mild to severe cutis laxa, dysmorphic facial features, and cardiopulmonary involvement identified biallelic missense mutations in ATP6V1E1 and ATP6V1A, which encode the El and A subunits, respectively, of the V-1 domain of the heteromultimeric V-ATPase complex. Structural modeling indicated that all substitutions affect critical residues and inter- or intrasubunit interactions. Furthermore, complexome profiling, a method combining blue-native gel electrophoresis and liquid chromatography tandem mass spectrometry, showed that they disturb either the assembly or the stability of the V-ATPase complex. Protein glycosylation was variably affected. Abnormal vesicular trafficking was evidenced by delayed retrograde transport after brefeldin A treatment and abnormal swelling and fragmentation of the Golgi apparatus. In addition to showing reduced and fragmented elastic fibers, the histopathological hallmark of cutis laxa, transmission electron microscopy of the dermis also showed pronounced changes in the structure and organization of the collagen fibers. Our findings expand the clinical and molecular spectrum of metabolic cutis laxa syndromes and further link defective extracellular matrix assembly to faulty protein processing and cellular trafficking caused by genetic defects in the V-ATPase complex.