Fan Xiaolian, Zhang Huiwen, Zhang Sunqu, Bagshaw Richard D, Tropak Michael B, Callahan John W, Mahuran Don J
Research Institute, Metabolism Program, The Hospital for Sick Children, Toronto, Ontario, M5G 1X8, Canada.
Am J Hum Genet. 2006 Oct;79(4):738-44. doi: 10.1086/508068. Epub 2006 Aug 23.
Mucopolysaccharidosis IIIC (MPS IIIC), or Sanfilippo C, represents the only MPS disorder in which the responsible gene has not been identified; however, the gene has been localized to the pericentromeric region of chromosome 8. In an ongoing proteomics study of mouse lysosomal membrane proteins, we identified an unknown protein whose human homolog, TMEM76, was encoded by a gene that maps to 8p11.1. A full-length mouse expressed sequence tag was expressed in human MPS IIIC fibroblasts, and its protein product localized to the lysosome and corrected the enzymatic defect. The mouse sequence was used to identify the full-length human homolog (HGSNAT), which encodes a protein with no homology to other proteins of known function but is highly conserved among plants and bacteria. Mutational analyses of two MPS IIIC cell lines identified a splice-junction mutation that accounted for three mutant alleles, and a single base-pair insertion accounted for the fourth.
黏多糖贮积症IIIC型(MPS IIIC),又称桑菲利波C型,是唯一一种致病基因尚未确定的黏多糖贮积症;不过,该基因已被定位到8号染色体的着丝粒周围区域。在一项正在进行的小鼠溶酶体膜蛋白蛋白质组学研究中,我们鉴定出一种未知蛋白质,其人类同源物TMEM76由一个定位于8p11.1的基因编码。一个全长小鼠表达序列标签在人类MPS IIIC成纤维细胞中表达,其蛋白质产物定位于溶酶体并纠正了酶缺陷。利用小鼠序列鉴定出全长人类同源物(HGSNAT),它编码的蛋白质与其他已知功能的蛋白质无同源性,但在植物和细菌中高度保守。对两个MPS IIIC细胞系的突变分析确定了一个剪接连接突变,该突变占三个突变等位基因,一个单碱基对插入占第四个突变等位基因。