Raas-Rothschild A, Cormier-Daire V, Bao M, Genin E, Salomon R, Brewer K, Zeigler M, Mandel H, Toth S, Roe B, Munnich A, Canfield W M
Department of Human Genetics, Hadassah Hebrew University Hospital, Jerusalem 91120, Israel.
J Clin Invest. 2000 Mar;105(5):673-81. doi: 10.1172/JCI5826.
Mucolipidosis IIIC, or variant pseudo-Hurler polydystrophy, is an autosomal recessive disease of lysosomal hydrolase trafficking. Unlike the related diseases, mucolipidosis II and IIIA, the enzyme affected in mucolipidosis IIIC (N-Acetylglucosamine-1-phosphotransferase [GlcNAc-phosphotransferase]) retains full transferase activity on synthetic substrates but lacks activity on lysosomal hydrolases. Bovine GlcNAc-phosphotransferase has recently been isolated as a multisubunit enzyme with the subunit structure alpha(2)beta(2)gamma(2). We cloned the cDNA for the human gamma-subunit and localized its gene to chromosome 16p. We also showed, in a large multiplex Druze family that exhibits this disorder, that MLIIIC also maps to this chromosomal region. Sequence analysis of the gamma-subunit cDNA in patients from 3 families identified a frameshift mutation, in codon 167 of the gamma subunit, that segregated with the disease, indicating MLIIIC results from mutations in the phosphotransferase gamma-subunit gene. This is to our knowledge the first description of the molecular basis for a human mucolipidosis and suggests that the gamma subunit functions in lysosomal hydrolase recognition.
黏脂贮积症IIIC型,或变异型假性胡尔勒氏多营养不良,是一种溶酶体水解酶运输的常染色体隐性疾病。与相关疾病黏脂贮积症II型和IIIA型不同,黏脂贮积症IIIC型中受影响的酶(N - 乙酰葡糖胺 - 1 - 磷酸转移酶[GlcNAc - 磷酸转移酶])在合成底物上保留了完整的转移酶活性,但在溶酶体水解酶上缺乏活性。牛GlcNAc - 磷酸转移酶最近被分离为一种具有α(2)β(2)γ(2)亚基结构的多亚基酶。我们克隆了人类γ亚基的cDNA,并将其基因定位到16号染色体短臂。我们还在一个表现出这种疾病的德鲁兹大家族中表明,黏脂贮积症IIIC型也定位于这个染色体区域。对来自3个家族的患者的γ亚基cDNA进行序列分析,在γ亚基的第167密码子中发现了一个移码突变,该突变与疾病共分离,表明黏脂贮积症IIIC型是由磷酸转移酶γ亚基基因突变引起的。据我们所知,这是对人类黏脂贮积症分子基础的首次描述,并表明γ亚基在溶酶体水解酶识别中发挥作用。