TY - JOUR
T1 - Fabry disease
T2 - Twenty novel α-galactosidase a mutations causing the classical phenotype
AU - Ashley, Grace A.
AU - Shabbeer, Junaid
AU - Yasuda, Makiko
AU - Eng, Christine M.
AU - Desnick, Robert J.
PY - 2001
Y1 - 2001
N2 - Fabry disease, an X-linked inborn error of glycosphingolipid catabolism, results from the deficient activity of the lysosomal exoglycohydrolase, α-galactosidase A (EC 3.2.1.22; α-Gal A). The nature of the molecular lesions in the α-Gal A gene in 40 unrelated families with the classical phenotype (absent α-Gal A activity) was determined in order to provide precise heterozygote detection and prenatal diagnosis, and to explore possible genotype/phenotype correlations. Genomic DNA was isolated from unrelated affected males, and the entire α-Gal A coding region and flanking intronic sequences were analyzed by polymerase chain reaction (PCR) amplification and automated sequencing. Twenty new mutations were identified: M51K, D92N, D136H, F169S, C172F, L191Q, S247P, Q250X, P259R, G261D, T282N, R301P, W349X, T410K, 124delAT, 842delTAA, 1033delTC, 82insG, 893insG, and 903insG. In the remaining 20 unrelated Fabry families, 17 previously reported mutations were detected. These studies further define the heterogeneity of mutations in the α-Gal A gene causing the classic Fabry disease phenotype, and permit precise heterozygote detection and prenatal diagnosis.
AB - Fabry disease, an X-linked inborn error of glycosphingolipid catabolism, results from the deficient activity of the lysosomal exoglycohydrolase, α-galactosidase A (EC 3.2.1.22; α-Gal A). The nature of the molecular lesions in the α-Gal A gene in 40 unrelated families with the classical phenotype (absent α-Gal A activity) was determined in order to provide precise heterozygote detection and prenatal diagnosis, and to explore possible genotype/phenotype correlations. Genomic DNA was isolated from unrelated affected males, and the entire α-Gal A coding region and flanking intronic sequences were analyzed by polymerase chain reaction (PCR) amplification and automated sequencing. Twenty new mutations were identified: M51K, D92N, D136H, F169S, C172F, L191Q, S247P, Q250X, P259R, G261D, T282N, R301P, W349X, T410K, 124delAT, 842delTAA, 1033delTC, 82insG, 893insG, and 903insG. In the remaining 20 unrelated Fabry families, 17 previously reported mutations were detected. These studies further define the heterogeneity of mutations in the α-Gal A gene causing the classic Fabry disease phenotype, and permit precise heterozygote detection and prenatal diagnosis.
KW - Fabry disease
KW - Genetic heterogeneity
KW - Lysosomal storage disease
KW - Mutation analysis
KW - α-galactosidase A
UR - http://www.scopus.com/inward/record.url?scp=0035035316&partnerID=8YFLogxK
U2 - 10.1007/s100380170088
DO - 10.1007/s100380170088
M3 - Article
C2 - 11322659
AN - SCOPUS:0035035316
SN - 1434-5161
VL - 46
SP - 192
EP - 196
JO - Journal of Human Genetics
JF - Journal of Human Genetics
IS - 4
ER -