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5. FLT4 causes developmental disorders of the cardiovascular and lymphovascular systems via pleiotropic molecular mechanisms. Monaghan RM; Naylor RW; Flatman D; Kasher PR; Williams SG; Keavney BD Cardiovasc Res; 2024 Sep; 120(10):1164-1176. PubMed ID: 38713105 [TBL] [Abstract][Full Text] [Related]
6. Rare copy number variations in adults with tetralogy of Fallot implicate novel risk gene pathways. Silversides CK; Lionel AC; Costain G; Merico D; Migita O; Liu B; Yuen T; Rickaby J; Thiruvahindrapuram B; Marshall CR; Scherer SW; Bassett AS PLoS Genet; 2012; 8(8):e1002843. PubMed ID: 22912587 [TBL] [Abstract][Full Text] [Related]
7. Genes and Pathways Implicated in Tetralogy of Fallot Revealed by Ultra-Rare Variant Burden Analysis in 231 Genome Sequences. Manshaei R; Merico D; Reuter MS; Engchuan W; Mojarad BA; Chaturvedi R; Heung T; Pellecchia G; Zarrei M; Nalpathamkalam T; Khan R; Okello JBA; Liston E; Curtis M; Yuen RKC; Marshall CR; Jobling RK; Oechslin E; Wald RM; Silversides CK; Scherer SW; Kim RH; Bassett AS Front Genet; 2020; 11():957. PubMed ID: 33110418 [TBL] [Abstract][Full Text] [Related]
8. Identification of novel rare copy number variants associated with sporadic tetralogy of Fallot and clinical implications. He GW; Maslen CL; Chen HX; Hou HT; Bai XY; Wang XL; Liu XC; Lu WL; Chen XX; Chen WD; Xing QS; Wu Q; Wang J; Yang Q Clin Genet; 2022 Nov; 102(5):391-403. PubMed ID: 35882632 [TBL] [Abstract][Full Text] [Related]
9. Utilization of Whole Exome Sequencing to Identify Causative Mutations in Familial Congenital Heart Disease. LaHaye S; Corsmeier D; Basu M; Bowman JL; Fitzgerald-Butt S; Zender G; Bosse K; McBride KL; White P; Garg V Circ Cardiovasc Genet; 2016 Aug; 9(4):320-9. PubMed ID: 27418595 [TBL] [Abstract][Full Text] [Related]
10. Genome-Wide Association Study to Find Modifiers for Tetralogy of Fallot in the 22q11.2 Deletion Syndrome Identifies Variants in the Guo T; Repetto GM; McDonald McGinn DM; Chung JH; Nomaru H; Campbell CL; Blonska A; Bassett AS; Chow EWC; Mlynarski EE; Swillen A; Vermeesch J; Devriendt K; Gothelf D; Carmel M; Michaelovsky E; Schneider M; Eliez S; Antonarakis SE; Coleman K; Tomita-Mitchell A; Mitchell ME; Digilio MC; Dallapiccola B; Marino B; Philip N; Busa T; Kushan-Wells L; Bearden CE; Piotrowicz M; Hawuła W; Roberts AE; Tassone F; Simon TJ; van Duin EDA; van Amelsvoort TA; Kates WR; Zackai E; Johnston HR; Cutler DJ; Agopian AJ; Goldmuntz E; Mitchell LE; Wang T; Emanuel BS; Morrow BE; Circ Cardiovasc Genet; 2017 Oct; 10(5):e001690. PubMed ID: 29025761 [TBL] [Abstract][Full Text] [Related]
11. Genetic Variants of Yin XY; Chen HX; Chen Z; Yang Q; Han J; He GW Biomolecules; 2023 Feb; 13(2):. PubMed ID: 36830727 [TBL] [Abstract][Full Text] [Related]
12. Gene-environment regulatory circuits of right ventricular pathology in tetralogy of fallot. Zhao Y; Kang X; Gao F; Guzman A; Lau RP; Biniwale R; Wadehra M; Reemtsen B; Garg M; Halnon N; Quintero-Rivera F; Van Arsdell G; Coppola G; Nelson SF; Touma M; J Mol Med (Berl); 2019 Dec; 97(12):1711-1722. PubMed ID: 31834445 [TBL] [Abstract][Full Text] [Related]
13. Genetic variants at 10p11 confer risk of Tetralogy of Fallot in Chinese of Nanjing. Xu J; Lin Y; Si L; Jin G; Dai J; Wang C; Chen J; Da M; Hu Y; Yi C; Hu Z; Shen H; Mo X; Chen Y; Wang X PLoS One; 2014; 9(3):e89636. PubMed ID: 24594544 [TBL] [Abstract][Full Text] [Related]
14. Whole exome sequencing identifies novel inherited genetic variants in tetralogy of Fallot. Pan Y; Liu M; Zhang S; Mei H; Wu J J Thorac Dis; 2022 Aug; 14(8):3008-3015. PubMed ID: 36071769 [TBL] [Abstract][Full Text] [Related]
15. Systematic survey of variants in TBX1 in non-syndromic tetralogy of Fallot identifies a novel 57 base pair deletion that reduces transcriptional activity but finds no evidence for association with common variants. Griffin HR; Töpf A; Glen E; Zweier C; Stuart AG; Parsons J; Peart I; Deanfield J; O'Sullivan J; Rauch A; Scambler P; Burn J; Cordell HJ; Keavney B; Goodship JA Heart; 2010 Oct; 96(20):1651-5. PubMed ID: 20937753 [TBL] [Abstract][Full Text] [Related]
16. Functional polymorphisms of the neuropilin 1 gene are associated with the risk of tetralogy of Fallot in a Chinese Han population. Fan SH; Shen ZY; Xiao YM Gene; 2018 May; 653():72-79. PubMed ID: 29432830 [TBL] [Abstract][Full Text] [Related]
17. Rare and private variations in neural crest, apoptosis and sarcomere genes define the polygenic background of isolated Tetralogy of Fallot. Grunert M; Dorn C; Schueler M; Dunkel I; Schlesinger J; Mebus S; Alexi-Meskishvili V; Perrot A; Wassilew K; Timmermann B; Hetzer R; Berger F; Sperling SR Hum Mol Genet; 2014 Jun; 23(12):3115-28. PubMed ID: 24459294 [TBL] [Abstract][Full Text] [Related]
18. Genetic variations of VEGF gene were associated with tetralogy of fallot risk in a Chinese Han population. Yan L; Ge Q; Xi C; Zhang X; Guo Y Genet Test Mol Biomarkers; 2015 May; 19(5):264-71. PubMed ID: 25894981 [TBL] [Abstract][Full Text] [Related]
19. Multiple gene variations contributed to congenital heart disease via GATA family transcriptional regulation. Qian Y; Xiao D; Guo X; Chen H; Hao L; Ma X; Huang G; Ma D; Wang H J Transl Med; 2017 Apr; 15(1):69. PubMed ID: 28372585 [TBL] [Abstract][Full Text] [Related]
20. Functionally significant, rare transcription factor variants in tetralogy of Fallot. Töpf A; Griffin HR; Glen E; Soemedi R; Brown DL; Hall D; Rahman TJ; Eloranta JJ; Jüngst C; Stuart AG; O'Sullivan J; Keavney BD; Goodship JA PLoS One; 2014; 9(8):e95453. PubMed ID: 25093829 [TBL] [Abstract][Full Text] [Related] [Next] [New Search]