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岩藻糖苷贮积症:8例病例的遗传学和生物化学分析

Fucosidosis: genetic and biochemical analysis of eight cases.

作者信息

Cragg H, Williamson M, Young E, O'Brien J, Alhadeff J, Fang-Kircher S, Paschke E, Winchester B

机构信息

Division of Biochemistry and Genetics, Institute of Child Health, (University of London), UK.

出版信息

J Med Genet. 1997 Feb;34(2):105-10. doi: 10.1136/jmg.34.2.105.

Abstract

The molecular basis of the deficiency of alpha-L-fucosidase has been investigated in eight patients who had been diagnosed clinically and enzymatically as suffering from the autosomal recessive lysosomal storage disease fucosidosis. None of the patients had a deletion or gross alteration of the alpha-L-fucosidase gene (FUCA1). Single strand conformation polymorphism (SSCP) analysis followed by direct sequencing of amplified exons and flanking regions identified putative disease causing mutations in six of the patients, who had severe forms of the disease and very low residual alpha-L-fucosidase activity and protein. They were a 10 bp deletion in exon 1 (E113fs), a 1 bp deletion at position -2 of intron 2 (S216fs), a g-->a transition at IVS5+1, point mutations W183X and N329Y in exons 3 and 6, respectively, and a compound allele consisting of a point mutation in the signal peptide in exon 1, P5R, and a 1 bp insertion in exon 6 (Y330fs). One patient in whom an SSCP change was not detected had residual alpha-L-fucosidase activity and cross reacting protein in the heterozygous range and normal metabolism of metabolites containing fucose in his fibroblasts, consistent with the low activity polymorphism. The eighth patient, who had a partial deficiency of alpha-L-fucosidase in her fibroblasts and leucocytes at a young age but normal alpha-L-fucosidase activity and protein at a later age, was homozygous for the common Q281R polymorphism in exon 5. She had no other sequence changes and Kivlin (Peters plus) syndrome has subsequently been diagnosed. The basis of her transient deficiency of alpha-L-fucosidase is not known. The detection of five novel mutations in six severely affected patients confirms the genetic heterogeneity in fucosidosis.

摘要

对8名经临床和酶学诊断患有常染色体隐性溶酶体贮积病岩藻糖苷贮积症的患者,研究了α-L-岩藻糖苷酶缺乏的分子基础。所有患者的α-L-岩藻糖苷酶基因(FUCA1)均未发生缺失或明显改变。通过单链构象多态性(SSCP)分析,随后对扩增的外显子和侧翼区域进行直接测序,在6名患者中鉴定出可能导致疾病的突变,这些患者患有严重形式的疾病,α-L-岩藻糖苷酶活性和蛋白残留量极低。它们分别是外显子1中的10 bp缺失(E113fs)、内含子2第-2位的1 bp缺失(S216fs)、IVS5+1处的g→a转换、外显子3和6中的点突变W183X和N329Y,以及一个复合等位基因,该复合等位基因由外显子1信号肽中的点突变P5R和外显子6中的1 bp插入(Y330fs)组成。1名未检测到SSCP变化的患者,其α-L-岩藻糖苷酶活性和交叉反应蛋白处于杂合范围内,且其成纤维细胞中含岩藻糖代谢物的代谢正常,这与低活性多态性一致。第8名患者在年轻时其成纤维细胞和白细胞中的α-L-岩藻糖苷酶部分缺乏,但在后来年龄时α-L-岩藻糖苷酶活性和蛋白正常,其外显子5中的常见Q281R多态性为纯合子。她没有其他序列变化,随后被诊断为Kivlin(Peters plus)综合征。其α-L-岩藻糖苷酶短暂缺乏的原因尚不清楚。在6名严重受影响的患者中检测到5种新突变,证实了岩藻糖苷贮积症的遗传异质性。

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