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[与先天性房间隔缺损相关的新型GATA4突变的基因筛查]

[Genetic screening for novel GATA4 mutations associated with congenital atrial septal defect].

作者信息

Wang Juan, Li Xin-ming, Xin Yuan-feng, Wang Li-jie, Xu Wen-jun, Hu Da-yi

机构信息

Department of Cardiology, Tongji University Affiliated East Hospital, Shanghai 200120, China.

出版信息

Zhonghua Xin Xue Guan Bing Za Zhi. 2010 May;38(5):429-34.

Abstract

OBJECTIVE

To screen the gene GATA4 for novel mutations associated with congenital atrial septal defect (ASD).

METHODS

The clinical data and peripheral venous blood specimen from 85 unrelated subjects with congenital ASD were collected and analyzed in contrast to 200 healthy individuals. The coding exons and the exon/intron boundaries of GATA4 gene were amplified by polymerase chain reaction and sequenced using the di-deoxynucleotide chain termination procedure. The obtained sequences were aligned with those publicized in GenBank with the help of programme BLAST to identify the sequence variations. The software Clustal W was applied to analysis of the conservation of altered amino acids.

RESULTS

Three novel heterozygous missense GATA4 mutations were identified in 3 of 85 ASD patients, respectively. Namely, the triplet substitutions of ATG for GTG at codon 267, GCC for ACC at codon 354, and CAA for CCA at codon 407, predicting the conversions of valine into methionine at amino acid residue 267 (V267M), threonine into alanine at amino acid residue 354 (T354A), and proline into glutamine at amino acid residue 407 (P407Q), were identified. No mutation was detected in 200 healthy controls. A cross-species alignment of GATA4 encoded protein sequences showed that the valine at amino acid residue 267 and proline at amino acid residue 407 were completely conserved evolutionarily.

CONCLUSION

Three novel heterozygous missense GATA4 mutations were identified in patients with congenital ASD, which reveals new molecular etiology responsible for ASD, and contributes to the early prophylaxis and therapy for ASD.

摘要

目的

筛选与先天性房间隔缺损(ASD)相关的新的GATA4基因突变。

方法

收集85例先天性ASD无关个体的临床资料和外周静脉血标本,并与200例健康个体进行对比分析。采用聚合酶链反应扩增GATA4基因的编码外显子及其外显子/内含子边界,并用双脱氧核苷酸链终止法进行测序。利用BLAST程序将获得的序列与GenBank中公布的序列进行比对,以鉴定序列变异。应用Clustal W软件分析氨基酸改变的保守性。

结果

在85例ASD患者中的3例中分别鉴定出3种新的杂合错义GATA4突变。即密码子267处的ATG被GTG取代、密码子354处的GCC被ACC取代、密码子407处的CAA被CCA取代,预测氨基酸残基267处的缬氨酸转变为甲硫氨酸(V267M)、氨基酸残基354处的苏氨酸转变为丙氨酸(T354A)、氨基酸残基407处的脯氨酸转变为谷氨酰胺(P407Q)。在200例健康对照中未检测到突变。GATA4编码蛋白序列的跨物种比对显示,氨基酸残基267处的缬氨酸和氨基酸残基407处的脯氨酸在进化上完全保守。

结论

在先天性ASD患者中鉴定出3种新的杂合错义GATA4突变,揭示了ASD新的分子病因,有助于ASD的早期预防和治疗。

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