期刊文献+

Mutational screening of affected cardiac tissues and peripheral blood cells identified novel somatic mutations in GATA4 in patients with ventricular septal defect

Mutational screening of affected cardiac tissues and peripheral blood cells identified novel somatic mutations in GATA4 in patients with ventricular septal defect
下载PDF
导出
摘要 The aim of this study was to examine how somatic mutations of the GATA4 gene contributed to the genesis of ventricular septal defect (VSD). The coding and intron-exon boundary regions of GATA4 were sequenced of DNA samples from peripheral blood cells and cardiac tissues of twenty surgically treated probands with VSD. Seven novel heterozygous variants were detected in cardiac tissues from VSD patients, but they were not detected in the peripheral blood cells of VSD patients or in 500 healthy control samples. We replicated 14 single nucleotide polymorphisms (SNPs) reported in NCBI. Bioinformatics analysis was performed to analyze the possible mechanism by which mutations were linked to VSD. Among those variants, c. 1004C〉A (p.S335X) occurred in the highly conserved domain of GATA4 and generated a termination codon, which led to the production of truncated GATA4. The seven novel heterozygous GATA4 mutations were only identified in cardiac tissues with VSD, suggesting that they are of somatic origin. A higher mutation rate in cardiac tissues than in peripheral blood cells implies that the genetic contribution to VSD may have been underestimated. The aim of this study was to examine how somatic mutations of the GATA4 gene contributed to the genesis of ventricular septal defect (VSD). The coding and intron-exon boundary regions of GATA4 were sequenced of DNA samples from peripheral blood cells and cardiac tissues of twenty surgically treated probands with VSD. Seven novel heterozygous variants were detected in cardiac tissues from VSD patients, but they were not detected in the peripheral blood cells of VSD patients or in 500 healthy control samples. We replicated 14 single nucleotide polymorphisms (SNPs) reported in NCBI. Bioinformatics analysis was performed to analyze the possible mechanism by which mutations were linked to VSD. Among those variants, c. 1004C〉A (p.S335X) occurred in the highly conserved domain of GATA4 and generated a termination codon, which led to the production of truncated GATA4. The seven novel heterozygous GATA4 mutations were only identified in cardiac tissues with VSD, suggesting that they are of somatic origin. A higher mutation rate in cardiac tissues than in peripheral blood cells implies that the genetic contribution to VSD may have been underestimated.
出处 《The Journal of Biomedical Research》 CAS 2011年第6期425-430,共6页 生物医学研究杂志(英文版)
基金 supported by National Natural Science Fund of China (No.30871079) National Science Foundation of Jiangsu province (No. BK2007232)
关键词 GATA4 ventricular septal defect somatic mutation GATA4, ventricular septal defect, somatic mutation
  • 相关文献

参考文献1

二级参考文献24

  • 1Jerome LA,Papaioannou VE.DiGeorge syndrome phenotype in mice mutant for the T-box gene,Tbxl.Nat Genet 2001; 27:286-291.
  • 2Lindsay EA,Vitelli F,Su H,Morishima M,Huynh T,Pramparo T,et al.Tbxl haploinsufficieny in the DiGeorge syndrome region causes aortic arch defects in mice.Nature 2001;410:97-101.
  • 3Merscher S,Funke B,Epstein JA,Heyer J,Puech A,Lum M,et al.Tbxl is responsible for cardiovascular defects in velo-cardio-facial/DiGeorge syndrome.Cell 2001; 104:619-629.
  • 4Taddei I,Morishima M,Huynh T,Lindsay EA.Genetic factors are major determinants of phenotypic variability in a mouse model of the DiGeorge/del22qll syndromes.Proc Nad Acad Sci USA 2001;98:11428-11431.
  • 5Piotrowski T,Ann DG Schilling TF,Nair S,Ruvinsky I,Geisler R,et al.The zebrafish van gogh mutation disrupts tbxl,which is involved in the DiGeorge deletion syndrome in humans.Development 2003; 130:5043-5052.
  • 6Vitelli F,Huynh T,Baldini A.Gain of function of Tbxl affects pharyngeal and heart development in the mouse.Genesis 2009; 47:188-195.
  • 7Yagi H,Furutani Y,Hamada H,Sasaki T,Asakawa S,Minoshima S,et al.Role of TBX1 in human del22qll.2 syndrome.Lancet 2003; 362:1366-1373.
  • 8Nichols CA,Creazzo TL.L-type Ca2+ channel function in the avian embryonic heart after cardiac neural crest ablation.Am J Physiol Heart Circ Physiol 2005; 288:H1173-H1178.
  • 9Hu N,Sedmera D,Yost HJ,Clark EB.Structure and function of the developing zebrafish heart.Anat Rec 2000; 260:148-157.
  • 10Fishman MC,Chien KR.Fashioning the vertebrate heart:earliest embryonic decisions.Development 1997; 124:2099-2117.

共引文献4

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部