Functional modeling of vitamin responsiveness in yeast: a common pyridoxine-responsive cystathionine beta-synthase mutation in homocystinuria

被引:63
作者
Kim, CE
Gallagher, PM
Guttormsen, AB
Refsum, H
Ueland, PM
Ose, L
Folling, I
Whitehead, AS
Tsai, MY
Kruger, WD
机构
[1] UNIV MINNESOTA,DEPT LAB MED & PATHOL,MINNEAPOLIS,MN 55455
[2] FOX CHASE CANC CTR,DIV POPULAT SCI,PHILADELPHIA,PA 19111
[3] UNIV DUBLIN TRINITY COLL,DEPT GENET,DUBLIN 2,IRELAND
[4] UNIV BERGEN,DEPT PHARMACOL,BERGEN,NORWAY
[5] NATL HOSP NORWAY,DEPT MED A,LIPID CLIN,OSLO,NORWAY
关键词
D O I
10.1093/hmg/6.13.2213
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Cystathionine beta-synthase (CBS) deficiency is an autosomal recessive disorder which results in extremely elevated levels of total plasma homocysteine (tHcy) and high risk of thromboembolic events. About half of all patients diagnosed with CBS deficiency respond to pyridoxine treatment with a significant lowering of tHcy levels. We examined 12 CBS-deficient patients from 10 Norwegian families for mutations in the CBS gene and identified mutations in 18 of the 20 CBS alleles. Five of the seven patients classified as pyridoxine-responsive contain the newly identified point mutation, G(797)A (R266K). This point mutation is tightly linked with a previously identified 'benign' 68 bp duplication of the intron 7-exon 8 boundary within the CBS gene. We tested the effect of all of the mutations identified on human CBS function utilizing a yeast system. Five of the six mutations had a distinguishable phenotype in yeast, indicating that they were in fact pathogenic. Interestingly, the G(797)A allele had no phenotype when the yeast were grown in high concentrations of pyridoxine, but a severe phenotype when grown in low concentrations, thus mirroring the behavior in humans. These studies show that the G(797)A mutation is an important cause of pyridoxine-responsive CBS deficiency and demonstrate the utility of yeast functional assays in the analysis of human mutations.
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页码:2213 / 2221
页数:9
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