Skip to main content
Top
Published in: Pediatric Cardiology 3/2013

01-03-2013 | Original Article

GATA5 Loss-of-Function Mutation Responsible for the Congenital Ventriculoseptal Defect

Authors: Dong Wei, Han Bao, Ning Zhou, Gui-Fen Zheng, Xing-Yuan Liu, Yi-Qing Yang

Published in: Pediatric Cardiology | Issue 3/2013

Login to get access

Abstract

The ventriculoseptal defect (VSD) is the most common form of congenital heart disease and a leading noninfectious cause of infant mortality. Growing evidence demonstrates that genetic defects are associated with congenital VSD. Nevertheless, VSD is genetically heterogeneous, and the molecular basis for VSD in an overwhelming majority of patients remains unknown. In this study, the whole coding region of GATA5, a gene encoding a zinc finger transcription factor crucial for normal cardiogenesis, was sequenced in 120 unrelated patients with VSD. The available relatives of the patient harboring the identified mutation and 200 unrelated individuals used as controls were subsequently genotyped. The causative potential of a sequence variation was evaluated by MutationTaster, and the functional effect of the mutation was characterized using a luciferase reporter assay system. As a result, a novel heterozygous GATA5 mutation, p.L199V, was identified in a patient with VSD, which was absent in 400 control chromosomes. Genetic analysis of the mutation carrier’s available family members showed that the substitution co-segregated with VSD transmitted in an autosomal dominant pattern. The p.L199V variation was automatically predicted to be disease causing, and the functional analysis showed that the GATA5 p.L199V mutant protein was associated with significantly reduced transcriptional activation compared with its wild-type counterpart. To the best of the authors’ knowledge, this is the first report on the link of functionally compromised GATA5 to human VSD, suggesting potential implications for the early prophylaxis and personalized treatment of VSD.
Literature
1.
go back to reference Bartlett H, Veenstra GJ, Weeks DL (2010) Examining the cardiac NK-2 genes in early heart development. Pediatr Cardiol 31:335–341PubMedCrossRef Bartlett H, Veenstra GJ, Weeks DL (2010) Examining the cardiac NK-2 genes in early heart development. Pediatr Cardiol 31:335–341PubMedCrossRef
3.
4.
go back to reference Butler TL, Esposito G, Blue GM, Cole AD, Costa MW, Waddell LB, Walizada G, Sholler GF, Kirk EP, Feneley M, Harvey RP, Winlaw DS (2010) GATA4 mutations in 357 unrelated patients with congenital heart malformation. Genet Test Mol Biomark 14:797–802CrossRef Butler TL, Esposito G, Blue GM, Cole AD, Costa MW, Waddell LB, Walizada G, Sholler GF, Kirk EP, Feneley M, Harvey RP, Winlaw DS (2010) GATA4 mutations in 357 unrelated patients with congenital heart malformation. Genet Test Mol Biomark 14:797–802CrossRef
5.
go back to reference Cecchetto A, Rampazzo A, Angelini A, Bianco LD, Padalino M, Stellin G, Daliento L (2010) From molecular mechanisms of cardiac development to genetic substrate of congenital heart diseases. Future Cardiol 6:373–393PubMedCrossRef Cecchetto A, Rampazzo A, Angelini A, Bianco LD, Padalino M, Stellin G, Daliento L (2010) From molecular mechanisms of cardiac development to genetic substrate of congenital heart diseases. Future Cardiol 6:373–393PubMedCrossRef
6.
go back to reference Chen MW, Pang YS, Guo Y, Pan JH, Liu BL, Shen J, Liu TW (2010) GATA4 mutations in Chinese patients with congenital cardiac septal defects. Pediatr Cardiol 31:85–89PubMedCrossRef Chen MW, Pang YS, Guo Y, Pan JH, Liu BL, Shen J, Liu TW (2010) GATA4 mutations in Chinese patients with congenital cardiac septal defects. Pediatr Cardiol 31:85–89PubMedCrossRef
7.
go back to reference Chen Y, Mao J, Sun Y, Zhang Q, Cheng HB, Yan WH, Choy KW, Li H (2010) A novel mutation of GATA4 in a familial atrial septal defect. Clin Chim Acta 411:1741–1745PubMedCrossRef Chen Y, Mao J, Sun Y, Zhang Q, Cheng HB, Yan WH, Choy KW, Li H (2010) A novel mutation of GATA4 in a familial atrial septal defect. Clin Chim Acta 411:1741–1745PubMedCrossRef
8.
go back to reference Cheng HH, Almodovar MC, Laussen PC, Wypij D, Polito A, Brown DW, Emani SM, Pigula FA, Allan CK, Costello JM (2011) Outcomes and risk factors for mortality in premature neonates with critical congenital heart disease. Pediatr Cardiol 32:1139–1146PubMedCrossRef Cheng HH, Almodovar MC, Laussen PC, Wypij D, Polito A, Brown DW, Emani SM, Pigula FA, Allan CK, Costello JM (2011) Outcomes and risk factors for mortality in premature neonates with critical congenital heart disease. Pediatr Cardiol 32:1139–1146PubMedCrossRef
9.
go back to reference Garg V, Kathiriya IS, Barnes R, Schluterman MK, King IN, Butler CA, Rothrock CR, Eapen RS, Hirayama-Yamada K, Joo K, Matsuoka R, Cohen JC, Srivastava D (2003) GATA4 mutations cause human congenital heart defects and reveal an interaction with TBX5. Nature 424:443–447PubMedCrossRef Garg V, Kathiriya IS, Barnes R, Schluterman MK, King IN, Butler CA, Rothrock CR, Eapen RS, Hirayama-Yamada K, Joo K, Matsuoka R, Cohen JC, Srivastava D (2003) GATA4 mutations cause human congenital heart defects and reveal an interaction with TBX5. Nature 424:443–447PubMedCrossRef
10.
go back to reference Hamanoue H, Rahayuningsih SE, Hirahara Y, Itoh J, Yokoyama U, Mizuguchi T, Saitsu H, Miyake N, Hirahara F, Matsumoto N (2009) Genetic screening of 104 patients with congenitally malformed hearts revealed a fresh mutation of GATA4 in those with atrial septal defects. Cardiol Young 19:482–485PubMedCrossRef Hamanoue H, Rahayuningsih SE, Hirahara Y, Itoh J, Yokoyama U, Mizuguchi T, Saitsu H, Miyake N, Hirahara F, Matsumoto N (2009) Genetic screening of 104 patients with congenitally malformed hearts revealed a fresh mutation of GATA4 in those with atrial septal defects. Cardiol Young 19:482–485PubMedCrossRef
11.
go back to reference Hartman RJ, Rasmussen SA, Botto LD, Riehle-Colarusso T, Martin CL, Cragan JD, Shin M, Correa A (2011) The contribution of chromosomal abnormalities to congenital heart defects: a population-based study. Pediatr Cardiol 32:1147–1157PubMedCrossRef Hartman RJ, Rasmussen SA, Botto LD, Riehle-Colarusso T, Martin CL, Cragan JD, Shin M, Correa A (2011) The contribution of chromosomal abnormalities to congenital heart defects: a population-based study. Pediatr Cardiol 32:1147–1157PubMedCrossRef
12.
go back to reference Heicklen-Klein A, McReynolds LJ, Evans T (2005) Using the zebra fish model to study GATA transcription factors. Semin Cell Dev Biol 16:95–106PubMedCrossRef Heicklen-Klein A, McReynolds LJ, Evans T (2005) Using the zebra fish model to study GATA transcription factors. Semin Cell Dev Biol 16:95–106PubMedCrossRef
13.
go back to reference Henderson DJ, Anderson RH (2009) The development and structure of the ventricles in the human heart. Pediatr Cardiol 30:588–596PubMedCrossRef Henderson DJ, Anderson RH (2009) The development and structure of the ventricles in the human heart. Pediatr Cardiol 30:588–596PubMedCrossRef
14.
go back to reference Hirayama-Yamada K, Kamisago M, Akimoto K, Aotsuka H, Nakamura Y, Tomita H, Furutani M, Imamura S, Takao A, Nakazawa M, Matsuoka R (2005) Phenotypes with GATA4 or NKX2.5 mutations in familial atrial septal defect. Am J Med Genet A 135:47–52PubMed Hirayama-Yamada K, Kamisago M, Akimoto K, Aotsuka H, Nakamura Y, Tomita H, Furutani M, Imamura S, Takao A, Nakazawa M, Matsuoka R (2005) Phenotypes with GATA4 or NKX2.5 mutations in familial atrial septal defect. Am J Med Genet A 135:47–52PubMed
15.
go back to reference Kasahara H, Lee B, Schott JJ, Benson DW, Seidman JG, Seidman CE, Izumo S (2000) Loss of function and inhibitory effects of human CSX/NKX2.5 homeoprotein mutations associated with congenital heart disease. J Clin Investig 106:299–308PubMedCrossRef Kasahara H, Lee B, Schott JJ, Benson DW, Seidman JG, Seidman CE, Izumo S (2000) Loss of function and inhibitory effects of human CSX/NKX2.5 homeoprotein mutations associated with congenital heart disease. J Clin Investig 106:299–308PubMedCrossRef
16.
go back to reference Kodo K, Nishizawa T, Furutani M, Arai S, Yamamura E, Joo K, Takahashi T, Matsuoka R, Yamagishi H (2009) GATA6 mutations cause human cardiac outflow tract defects by disrupting semaphorin-plexin signaling. Proc Natl Acad Sci USA 106:13933–13938PubMedCrossRef Kodo K, Nishizawa T, Furutani M, Arai S, Yamamura E, Joo K, Takahashi T, Matsuoka R, Yamagishi H (2009) GATA6 mutations cause human cardiac outflow tract defects by disrupting semaphorin-plexin signaling. Proc Natl Acad Sci USA 106:13933–13938PubMedCrossRef
17.
go back to reference Laforest B, Nemer M (2011) GATA5 interacts with GATA4 and GATA6 in outflow tract development. Dev Biol 358:368–378PubMedCrossRef Laforest B, Nemer M (2011) GATA5 interacts with GATA4 and GATA6 in outflow tract development. Dev Biol 358:368–378PubMedCrossRef
18.
go back to reference Lin X, Huo Z, Liu X, Zhang Y, Li L, Zhao H, Yan B, Liu Y, Yang Y, Chen YH (2010) A novel GATA6 mutation in patients with tetralogy of Fallot or atrial septal defect. J Hum Genet 55:662–667PubMedCrossRef Lin X, Huo Z, Liu X, Zhang Y, Li L, Zhao H, Yan B, Liu Y, Yang Y, Chen YH (2010) A novel GATA6 mutation in patients with tetralogy of Fallot or atrial septal defect. J Hum Genet 55:662–667PubMedCrossRef
19.
go back to reference Liu XY, Wang J, Zheng JH, Bai K, Liu ZM, Wang XZ, Liu X, Fang WY, Yang YQ (2011) Involvement of a novel GATA4 mutation in atrial septal defects. Int J Mol Med 28:17–23PubMed Liu XY, Wang J, Zheng JH, Bai K, Liu ZM, Wang XZ, Liu X, Fang WY, Yang YQ (2011) Involvement of a novel GATA4 mutation in atrial septal defects. Int J Mol Med 28:17–23PubMed
20.
go back to reference Maitra M, Koenig SN, Srivastava D, Garg V (2010) Identification of GATA6 sequence variants in patients with congenital heart defects. Pediatr Res 68:281–285PubMedCrossRef Maitra M, Koenig SN, Srivastava D, Garg V (2010) Identification of GATA6 sequence variants in patients with congenital heart defects. Pediatr Res 68:281–285PubMedCrossRef
21.
go back to reference McQuillen PS, Miller SP (2010) Congenital heart disease and brain development. Ann NY Acad Sci 1184:68–86PubMedCrossRef McQuillen PS, Miller SP (2010) Congenital heart disease and brain development. Ann NY Acad Sci 1184:68–86PubMedCrossRef
22.
go back to reference Mead PE, Brivanlou IH, Kelley CM, Zon LI (1996) BMP-4-responsive regulation of dorsal–ventral patterning by the homeobox protein Mix.1. Nature 382:357–360PubMedCrossRef Mead PE, Brivanlou IH, Kelley CM, Zon LI (1996) BMP-4-responsive regulation of dorsal–ventral patterning by the homeobox protein Mix.1. Nature 382:357–360PubMedCrossRef
24.
go back to reference Nemer G, Qureshi ST, Malo D, Nemer M (1999) Functional analysis and chromosomal mapping of Gata5, a gene encoding a zinc finger DNA-binding protein. Mamm Genome 10:993–999PubMedCrossRef Nemer G, Qureshi ST, Malo D, Nemer M (1999) Functional analysis and chromosomal mapping of Gata5, a gene encoding a zinc finger DNA-binding protein. Mamm Genome 10:993–999PubMedCrossRef
25.
go back to reference Nemer G, Fadlalah F, Usta J, Nemer M, Dbaibo G, Obeid M, Bitar F (2006) A novel mutation in the GATA4 gene in patients with tetralogy of Fallot. Hum Mutat 27:293–294PubMedCrossRef Nemer G, Fadlalah F, Usta J, Nemer M, Dbaibo G, Obeid M, Bitar F (2006) A novel mutation in the GATA4 gene in patients with tetralogy of Fallot. Hum Mutat 27:293–294PubMedCrossRef
26.
go back to reference Okubo A, Miyoshi O, Baba K, Takagi M, Tsukamoto K, Kinoshita A, Yoshiura K, Kishino T, Ohta T, Niikawa N, Matsumoto N (2004) A novel GATA4 mutation completely segregated with atrial septal defect in a large Japanese family. J Med Genet 41:e97PubMedCrossRef Okubo A, Miyoshi O, Baba K, Takagi M, Tsukamoto K, Kinoshita A, Yoshiura K, Kishino T, Ohta T, Niikawa N, Matsumoto N (2004) A novel GATA4 mutation completely segregated with atrial septal defect in a large Japanese family. J Med Genet 41:e97PubMedCrossRef
27.
go back to reference Payne AR, Chang SW, Koenig SN, Zinn AR, Garg V (2012) Submicroscopic chromosomal copy number variations identified in children with hypoplastic left heart syndrome. Pediatr Cardiol 33:757–763PubMedCrossRef Payne AR, Chang SW, Koenig SN, Zinn AR, Garg V (2012) Submicroscopic chromosomal copy number variations identified in children with hypoplastic left heart syndrome. Pediatr Cardiol 33:757–763PubMedCrossRef
28.
go back to reference Perry JC (2012) Sudden cardiac death and malignant arrhythmias: the scope of the problem in adult congenital heart patients. Pediatr Cardiol 33:484–490PubMedCrossRef Perry JC (2012) Sudden cardiac death and malignant arrhythmias: the scope of the problem in adult congenital heart patients. Pediatr Cardiol 33:484–490PubMedCrossRef
29.
go back to reference Peterkin T, Gibson A, Loose M, Patient R (2005) The roles of GATA-4, -5, and -6 in vertebrate heart development. Semin Cell Dev Biol 16:83–94PubMedCrossRef Peterkin T, Gibson A, Loose M, Patient R (2005) The roles of GATA-4, -5, and -6 in vertebrate heart development. Semin Cell Dev Biol 16:83–94PubMedCrossRef
30.
go back to reference Piggott KD, Sorbello A, Riddle E, DeCampli W (2011) Congenital cardiac defects: a possible association of aminopterin syndrome and in utero methotrexate exposure? Pediatr Cardiol 32:518–520PubMedCrossRef Piggott KD, Sorbello A, Riddle E, DeCampli W (2011) Congenital cardiac defects: a possible association of aminopterin syndrome and in utero methotrexate exposure? Pediatr Cardiol 32:518–520PubMedCrossRef
31.
go back to reference Pikkarainen S, Tokola H, Kerkelä R, Ruskoaho H (2004) GATA transcription factors in the developing and adult heart. Cardiovasc Res 63:196–207PubMedCrossRef Pikkarainen S, Tokola H, Kerkelä R, Ruskoaho H (2004) GATA transcription factors in the developing and adult heart. Cardiovasc Res 63:196–207PubMedCrossRef
32.
go back to reference Rajagopal SK, Ma Q, Obler D, Shen J, Manichaikul A, Tomita-Mitchell A, Boardman K, Briggs C, Garg V, Srivastava D, Goldmuntz E, Broman KW, Benson DW, Smoot LB, Pu WT (2007) Spectrum of heart disease associated with murine and human GATA4 mutation. J Mol Cell Cardiol 43:677–685PubMedCrossRef Rajagopal SK, Ma Q, Obler D, Shen J, Manichaikul A, Tomita-Mitchell A, Boardman K, Briggs C, Garg V, Srivastava D, Goldmuntz E, Broman KW, Benson DW, Smoot LB, Pu WT (2007) Spectrum of heart disease associated with murine and human GATA4 mutation. J Mol Cell Cardiol 43:677–685PubMedCrossRef
33.
go back to reference Reamon-Buettner SM, Borlak J (2005) GATA4 zinc finger mutations as a molecular rationale for septation defects of the human heart. J Med Genet 42:e32PubMedCrossRef Reamon-Buettner SM, Borlak J (2005) GATA4 zinc finger mutations as a molecular rationale for septation defects of the human heart. J Med Genet 42:e32PubMedCrossRef
34.
go back to reference Roger VL, Go AS, Lloyd-Jones DM, Benjamin EJ, Berry JD, Borden WB, Bravata DM, Dai S, Ford ES, Fox CS, Fullerton HJ, Gillespie C, Hailpern SM, Heit JA, Howard VJ, Kissela BM, Kittner SJ, Lackland DT, Lichtman JH, Lisabeth LD, Makuc DM, Marcus GM, Marelli A, Matchar DB, Moy CS, Mozaffarian D, Mussolino ME, Nichol G, Paynter NP, Soliman EZ, Sorlie PD, Sotoodehnia N, Turan TN, Virani SS, Wong ND, Woo D, Turner MB, American Heart Association Statistics Committee and Stroke Statistics Subcommittee (2012) Heart disease and stroke statistics—2012 update: a report from the American Heart Association. Circulation 125:e2–e220PubMedCrossRef Roger VL, Go AS, Lloyd-Jones DM, Benjamin EJ, Berry JD, Borden WB, Bravata DM, Dai S, Ford ES, Fox CS, Fullerton HJ, Gillespie C, Hailpern SM, Heit JA, Howard VJ, Kissela BM, Kittner SJ, Lackland DT, Lichtman JH, Lisabeth LD, Makuc DM, Marcus GM, Marelli A, Matchar DB, Moy CS, Mozaffarian D, Mussolino ME, Nichol G, Paynter NP, Soliman EZ, Sorlie PD, Sotoodehnia N, Turan TN, Virani SS, Wong ND, Woo D, Turner MB, American Heart Association Statistics Committee and Stroke Statistics Subcommittee (2012) Heart disease and stroke statistics—2012 update: a report from the American Heart Association. Circulation 125:e2–e220PubMedCrossRef
35.
go back to reference Salazar M, Consoli F, Villegas V, Caicedo V, Maddaloni V, Daniele P, Caianiello G, Pachón S, Nuñez F, Limongelli G, Pacileo G, Marino B, Bernal JE, De Luca A, Dallapiccola B (2011) Search of somatic GATA4 and NKX2.5 gene mutations in sporadic septal heart defects. Eur J Med Genet 54:306–309PubMedCrossRef Salazar M, Consoli F, Villegas V, Caicedo V, Maddaloni V, Daniele P, Caianiello G, Pachón S, Nuñez F, Limongelli G, Pacileo G, Marino B, Bernal JE, De Luca A, Dallapiccola B (2011) Search of somatic GATA4 and NKX2.5 gene mutations in sporadic septal heart defects. Eur J Med Genet 54:306–309PubMedCrossRef
36.
go back to reference Sarkozy A, Conti E, Neri C, D’Agostino R, Digilio MC, Esposito G, Toscano A, Marino B, Pizzuti A, Dallapiccola B (2005) Spectrum of atrial septal defects associated with mutations of NKX2.5 and GATA4 transcription factors. J Med Genet 42:e16PubMedCrossRef Sarkozy A, Conti E, Neri C, D’Agostino R, Digilio MC, Esposito G, Toscano A, Marino B, Pizzuti A, Dallapiccola B (2005) Spectrum of atrial septal defects associated with mutations of NKX2.5 and GATA4 transcription factors. J Med Genet 42:e16PubMedCrossRef
37.
go back to reference Shedeed SA, Elfaytouri E (2011) Brain maturity and brain injury in newborns with cyanotic congenital heart disease. Pediatr Cardiol 32:47–54PubMedCrossRef Shedeed SA, Elfaytouri E (2011) Brain maturity and brain injury in newborns with cyanotic congenital heart disease. Pediatr Cardiol 32:47–54PubMedCrossRef
38.
go back to reference Silka MJ, Bar-Cohen Y (2012) A contemporary assessment of the risk for sudden cardiac death in patients with congenital heart disease. Pediatr Cardiol 33:452–460PubMedCrossRef Silka MJ, Bar-Cohen Y (2012) A contemporary assessment of the risk for sudden cardiac death in patients with congenital heart disease. Pediatr Cardiol 33:452–460PubMedCrossRef
39.
go back to reference Sommer RJ, Hijazi ZM, Rhodes JF Jr (2008) Pathophysiology of congenital heart disease in the adult: Part I. Shunt lesions. Circulation 117:1090–1099PubMedCrossRef Sommer RJ, Hijazi ZM, Rhodes JF Jr (2008) Pathophysiology of congenital heart disease in the adult: Part I. Shunt lesions. Circulation 117:1090–1099PubMedCrossRef
40.
go back to reference Teixeira FM, Coelho RM, Proença C, Silva AM, Vieira D, Vaz C, Moura C, Viana V, Areias JC, Areias ME (2011) Quality of life experienced by adolescents and young adults with congenital heart disease. Pediatr Cardiol 32:1132–1138PubMedCrossRef Teixeira FM, Coelho RM, Proença C, Silva AM, Vieira D, Vaz C, Moura C, Viana V, Areias JC, Areias ME (2011) Quality of life experienced by adolescents and young adults with congenital heart disease. Pediatr Cardiol 32:1132–1138PubMedCrossRef
41.
go back to reference Tomita-Mitchell A, Maslen CL, Morris CD, Garg V, Goldmuntz E (2007) GATA4 sequence variants in patients with congenital heart disease. J Med Genet 44:779–783PubMedCrossRef Tomita-Mitchell A, Maslen CL, Morris CD, Garg V, Goldmuntz E (2007) GATA4 sequence variants in patients with congenital heart disease. J Med Genet 44:779–783PubMedCrossRef
42.
go back to reference Wang J, Fang M, Liu XY, Xin YF, Liu ZM, Chen XZ, Wang XZ, Fang WY, Liu X, Yang YQ (2011) A novel GATA4 mutation responsible for congenital ventricular septal defects. Int J Mol Med 28:557–564PubMed Wang J, Fang M, Liu XY, Xin YF, Liu ZM, Chen XZ, Wang XZ, Fang WY, Liu X, Yang YQ (2011) A novel GATA4 mutation responsible for congenital ventricular septal defects. Int J Mol Med 28:557–564PubMed
43.
go back to reference Yang YQ, Li L, Wang J, Liu XY, Chen XZ, Zhang W, Wang XZ, Jiang JQ, Liu X, Fang WY (2012) A novel GATA4 loss-of-function mutation associated with congenital ventricular septal defect. Pediatr Cardiol 33:539–546PubMedCrossRef Yang YQ, Li L, Wang J, Liu XY, Chen XZ, Zhang W, Wang XZ, Jiang JQ, Liu X, Fang WY (2012) A novel GATA4 loss-of-function mutation associated with congenital ventricular septal defect. Pediatr Cardiol 33:539–546PubMedCrossRef
44.
go back to reference Yang YQ, Wang J, Liu XY, Chen XZ, Zhang W, Wang XZ, Liu X, Fang WY (2012) Novel GATA4 mutations in patients with congenital ventricular septal defects. Med Sci Monit 18:CR344–CR350PubMedCrossRef Yang YQ, Wang J, Liu XY, Chen XZ, Zhang W, Wang XZ, Liu X, Fang WY (2012) Novel GATA4 mutations in patients with congenital ventricular septal defects. Med Sci Monit 18:CR344–CR350PubMedCrossRef
45.
go back to reference Yang YQ, Wang J, Wang XH, Wang Q, Tan HW, Zhang M, Shen FF, Jiang JQ, Fang WY, Liu X (2012) Mutational spectrum of the GATA5 gene associated with familial atrial fibrillation. Int J Cardiol 157:305–307PubMedCrossRef Yang YQ, Wang J, Wang XH, Wang Q, Tan HW, Zhang M, Shen FF, Jiang JQ, Fang WY, Liu X (2012) Mutational spectrum of the GATA5 gene associated with familial atrial fibrillation. Int J Cardiol 157:305–307PubMedCrossRef
46.
go back to reference Zhang W, Li X, Shen A, Jiao W, Guan X, Li Z (2008) GATA4 mutations in 486 Chinese patients with congenital heart disease. Eur J Med Genet 51:527–535PubMedCrossRef Zhang W, Li X, Shen A, Jiao W, Guan X, Li Z (2008) GATA4 mutations in 486 Chinese patients with congenital heart disease. Eur J Med Genet 51:527–535PubMedCrossRef
47.
go back to reference Zheng GF, Wei D, Zhao H, Zhou N, Yang YQ, Liu XY (2012) A novel GATA6 mutation associated with congenital ventricular septal defect. Int J Mol Med 29:1065–1071PubMed Zheng GF, Wei D, Zhao H, Zhou N, Yang YQ, Liu XY (2012) A novel GATA6 mutation associated with congenital ventricular septal defect. Int J Mol Med 29:1065–1071PubMed
Metadata
Title
GATA5 Loss-of-Function Mutation Responsible for the Congenital Ventriculoseptal Defect
Authors
Dong Wei
Han Bao
Ning Zhou
Gui-Fen Zheng
Xing-Yuan Liu
Yi-Qing Yang
Publication date
01-03-2013
Publisher
Springer-Verlag
Published in
Pediatric Cardiology / Issue 3/2013
Print ISSN: 0172-0643
Electronic ISSN: 1432-1971
DOI
https://doi.org/10.1007/s00246-012-0482-6

Other articles of this Issue 3/2013

Pediatric Cardiology 3/2013 Go to the issue

Images in Pediatric Cardiology

Double Left Brachiocephalic Vein