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Mutations in TMEM76* cause mucopolysaccharidosis IIIC (Sanfilippo C syndrome)
Authors:Hrebícek Martin  Mrázová Lenka  Seyrantepe Volkan  Durand Stéphanie  Roslin Nicole M  Nosková Lenka  Hartmannová Hana  Ivánek Robert  Cízkova Alena  Poupetová Helena  Sikora Jakub  Urinovská Jana  Stranecký Viktor  Zeman Jirí  Lepage Pierre  Roquis David  Verner Andrei  Ausseil Jérome  Beesley Clare E  Maire Irène  Poorthuis Ben J H M  van de Kamp Jiddeke  van Diggelen Otto P  Wevers Ron A  Hudson Thomas J  Fujiwara T Mary  Majewski Jacek  Morgan Kenneth  Kmoch Stanislav  Pshezhetsky Alexey V
Affiliation:Institute for Inherited Metabolic Disorders, Charles University 1st School of Medicine, Prague, Czech Republic.
Abstract:Mucopolysaccharidosis IIIC (MPS IIIC, or Sanfilippo C syndrome) is a lysosomal storage disorder caused by the inherited deficiency of the lysosomal membrane enzyme acetyl-coenzyme A: alpha -glucosaminide N-acetyltransferase (N-acetyltransferase), which leads to impaired degradation of heparan sulfate. We report the narrowing of the candidate region to a 2.6-cM interval between D8S1051 and D8S1831 and the identification of the transmembrane protein 76 gene (TMEM76), which encodes a 73-kDa protein with predicted multiple transmembrane domains and glycosylation sites, as the gene that causes MPS IIIC when it is mutated. Four nonsense mutations, 3 frameshift mutations due to deletions or a duplication, 6 splice-site mutations, and 14 missense mutations were identified among 30 probands with MPS IIIC. Functional expression of human TMEM76 and the mouse ortholog demonstrates that it is the gene that encodes the lysosomal N-acetyltransferase and suggests that this enzyme belongs to a new structural class of proteins that transport the activated acetyl residues across the cell membrane.
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