The association of single nucleotide polymorphism of slow delayed rectifier K+ channel genes with atrial fibrillation in Han nationality Chinese.
- Author:
Zhi-yu ZENG
1
;
Jie-lin PU
;
Chen TAN
;
Si-yong TENG
;
Jian-hong CHEN
;
Shao-yong SU
;
Xiao-yang ZHOU
;
Shu ZHANG
;
Yi-shi LI
;
Fang-zheng WANG
;
Dong-feng GU
Author Information
- Publication Type:Journal Article
- MeSH: Aged; Alleles; Asian Continental Ancestry Group; Atrial Fibrillation; ethnology; genetics; Female; Gene Frequency; Genotype; Humans; KCNQ1 Potassium Channel; genetics; Male; Middle Aged; Polymorphism, Single Nucleotide; Potassium Channels, Voltage-Gated; genetics
- From: Chinese Journal of Cardiology 2005;33(11):987-991
- CountryChina
- Language:Chinese
-
Abstract:
OBJECTIVETo investigate the association between atrial fibrillation and the single nucleotide polymorphism (SNP) of slow delayed rectifier K(+) channel (I(Ks)) genes in Han nationality Chinese.
METHODSThree hundred and eighty of Han nationality Chinese (142 atrial fibrillation, 120 in-hospital and 118 out-hospital control) were enrolled in this study. Asian specific non-synonymous SNPs of KCNQ1 P448R, KCNQ1 R519H, KCNQ1 G643S, KCNE1 G38S and KCNE1 D85N were genotyped by restriction fragment length polymorphism analysis. A newly cloned KCNE4 gene was also screened for any possible SNP.
RESULTSThe minor allele frequency of KCNQ1 P448R, KCNQ1 R519H, KCNQ1 G643S, KCNE1 G38S and KCNE1 D85N in out-hospital subjects was 0.079, 0, 0.042, 0.317 and 0.004, respectively. None of these SNPs was relationed with any atrial fibrillation phenotype. A KCNE4 E145D was discovered and proven statistically to relation significantly to atrial fibrillation by logistic regression analysis (OR = 1.66, P = 0.044). The minor allele frequency of KCNE4 E145D was as high as 0.271 in out-hospital subjects.
CONCLUSIONSNone of the SNPs of KCNQ1 P448R, KCNQ1 R519H, KCNQ1 G643S, KCNE1 G38S and KCNE1 D85N was associated with atrial fibrillation phenotype, but KCNE4 E145D may relation to atrial fibrillation. The effect of KCNE4 E145D variation on the function of I(Ks) channel is to be determined.