Tomatsu S, Fukuda S, Cooper A, Wraith J E, Ferreira P, Di Natale P, Tortora P, Fujimoto A, Kato Z, Yamada N, Isogai K, Yamagishi A, Sukegawa K, Suzuki Y, Shimozawa N, Kondo N, Sly W S, Orii T
Department of Pediatrics, Gifu University School of Medicine, Japan.
Hum Mutat. 1997;10(5):368-75. doi: 10.1002/(SICI)1098-1004(1997)10:5<368::AID-HUMU6>3.0.CO;2-B.
Mucopolysaccharidosis IVA (MPS IVA) is an autosomal recessive disorder caused by a deficiency of the lysosomal N-acetylgalactosamine-6-sulfate sulfatase. Here, we report our analysis of data on 21 patients of diverse ethnic and geographic origins studied by SSCP and sequencing analysis. Sixteen mutations were detected, including 14 new mutations (11 missense, one premature termination, one splice site alteration, and one cryptic site alteration). The donor splice site mutation (IVS4 + 1G-->A) predicts that normal splicing will be abolished and that translation would lead to an immediate premature termination (W141X). Another novel nucleotide change outside the coding sequence is an intronic alteration (IVS9-42C-->T:ggtcggtgcggttggtgc) creating a potential cryptic donor site. The nucleotide sequence surrounding this alteration is highly suggestive of a consensus donor splice site. All 12 missense and nonsense mutations were shown by transient expression to abolish or greatly reduce GALNS activity, thereby providing an explanation as to why they produce MPS IVA. All mutations were readily confirmed by restriction enzyme or by allelic specific oligonucleotide analysis (ASO). These findings, coupled with previously reported mutations, bring the total of different mutations to 41 among independent families with MPS IVA, illustrating the extensive allelic heterogeneity among mutations producing MPS IVA.
黏多糖贮积症IVA型(MPS IVA)是一种常染色体隐性疾病,由溶酶体N - 乙酰半乳糖胺 - 6 - 硫酸酯硫酸酯酶缺乏引起。在此,我们报告了对21名来自不同种族和地理区域的患者数据的分析,这些数据通过单链构象多态性(SSCP)和测序分析获得。检测到16个突变,包括14个新突变(11个错义突变、1个提前终止突变、1个剪接位点改变和1个隐蔽位点改变)。供体剪接位点突变(IVS4 + 1G→A)预计正常剪接将被消除,翻译将导致立即提前终止(W141X)。编码序列外的另一个新核苷酸变化是内含子改变(IVS9 - 42C→T:ggtcggtgcggttggtgc),产生一个潜在的隐蔽供体位点。围绕此改变的核苷酸序列高度提示为一个共有供体剪接位点。通过瞬时表达显示,所有12个错义突变和无义突变均消除或大幅降低了GALNS活性,从而解释了它们为何导致MPS IVA。所有突变均可通过限制性内切酶或等位基因特异性寡核苷酸分析(ASO)轻易确认。这些发现,加上先前报道的突变,使MPS IVA独立家族中不同突变的总数达到41个,说明了产生MPS IVA的突变之间存在广泛的等位基因异质性。