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
Institute for Inherited Metabolic Disorders, Charles University 1st School of Medicine, Prague, Czech Republic.
Am J Hum Genet. 2006 Nov;79(5):807-19. doi: 10.1086/508294. Epub 2006 Sep 8.
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.
黏多糖贮积症IIIC型(MPS IIIC,或桑菲利波C综合征)是一种溶酶体贮积病,由溶酶体膜酶乙酰辅酶A:α-氨基葡萄糖苷N-乙酰转移酶(N-乙酰转移酶)的遗传性缺乏引起,这导致硫酸乙酰肝素降解受损。我们报告了候选区域缩小至D8S1051和D8S1831之间的2.6厘摩区间,并鉴定出跨膜蛋白76基因(TMEM76),该基因编码一种具有预测的多个跨膜结构域和糖基化位点的73 kDa蛋白,是导致MPS IIIC型发生突变时的致病基因。在30例MPS IIIC型先证者中鉴定出4个无义突变、3个因缺失或重复导致的移码突变、6个剪接位点突变和14个错义突变。人TMEM76及其小鼠同源物的功能表达表明,它是编码溶酶体N-乙酰转移酶的基因,并提示该酶属于一类新的蛋白质结构类别,可将活化的乙酰基残基转运穿过细胞膜。