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Page 1
Increased frequency of de novo copy number variants in congenital heart disease by integrative analysis of single nucleotide polymorphism array and exome sequence data.
Glessner JT, Bick AG, Ito K, Homsy J, Rodriguez-Murillo L, Fromer M, Mazaika E, Vardarajan B, Italia M, Leipzig J, DePalma SR, Golhar R, Sanders SJ, Yamrom B, Ronemus M, Iossifov I, Willsey AJ, State MW, Kaltman JR, White PS, Shen Y, Warburton D, Brueckner M, Seidman C, Goldmuntz E, Gelb BD, Lifton R, Seidman J, Hakonarson H, Chung WK. Glessner JT, et al. Among authors: kaltman jr. Circ Res. 2014 Oct 24;115(10):884-896. doi: 10.1161/CIRCRESAHA.115.304458. Epub 2014 Sep 9. Circ Res. 2014. PMID: 25205790 Free PMC article. Clinical Trial.
The Congenital Heart Disease Genetic Network Study: rationale, design, and early results.
Pediatric Cardiac Genomics Consortium; Gelb B, Brueckner M, Chung W, Goldmuntz E, Kaltman J, Kaski JP, Kim R, Kline J, Mercer-Rosa L, Porter G, Roberts A, Rosenberg E, Seiden H, Seidman C, Sleeper L, Tennstedt S, Kaltman J, Schramm C, Burns K, Pearson G, Rosenberg E. Pediatric Cardiac Genomics Consortium, et al. Circ Res. 2013 Feb 15;112(4):698-706. doi: 10.1161/CIRCRESAHA.111.300297. Circ Res. 2013. PMID: 23410879 Free PMC article.
De novo mutations in congenital heart disease with neurodevelopmental and other congenital anomalies.
Homsy J, Zaidi S, Shen Y, Ware JS, Samocha KE, Karczewski KJ, DePalma SR, McKean D, Wakimoto H, Gorham J, Jin SC, Deanfield J, Giardini A, Porter GA Jr, Kim R, Bilguvar K, López-Giráldez F, Tikhonova I, Mane S, Romano-Adesman A, Qi H, Vardarajan B, Ma L, Daly M, Roberts AE, Russell MW, Mital S, Newburger JW, Gaynor JW, Breitbart RE, Iossifov I, Ronemus M, Sanders SJ, Kaltman JR, Seidman JG, Brueckner M, Gelb BD, Goldmuntz E, Lifton RP, Seidman CE, Chung WK. Homsy J, et al. Among authors: kaltman jr. Science. 2015 Dec 4;350(6265):1262-6. doi: 10.1126/science.aac9396. Science. 2015. PMID: 26785492 Free PMC article.
Contribution of rare inherited and de novo variants in 2,871 congenital heart disease probands.
Jin SC, Homsy J, Zaidi S, Lu Q, Morton S, DePalma SR, Zeng X, Qi H, Chang W, Sierant MC, Hung WC, Haider S, Zhang J, Knight J, Bjornson RD, Castaldi C, Tikhonoa IR, Bilguvar K, Mane SM, Sanders SJ, Mital S, Russell MW, Gaynor JW, Deanfield J, Giardini A, Porter GA Jr, Srivastava D, Lo CW, Shen Y, Watkins WS, Yandell M, Yost HJ, Tristani-Firouzi M, Newburger JW, Roberts AE, Kim R, Zhao H, Kaltman JR, Goldmuntz E, Chung WK, Seidman JG, Gelb BD, Seidman CE, Lifton RP, Brueckner M. Jin SC, et al. Among authors: kaltman jr. Nat Genet. 2017 Nov;49(11):1593-1601. doi: 10.1038/ng.3970. Epub 2017 Oct 9. Nat Genet. 2017. PMID: 28991257 Free PMC article.
Genomic analyses implicate noncoding de novo variants in congenital heart disease.
Richter F, Morton SU, Kim SW, Kitaygorodsky A, Wasson LK, Chen KM, Zhou J, Qi H, Patel N, DePalma SR, Parfenov M, Homsy J, Gorham JM, Manheimer KB, Velinder M, Farrell A, Marth G, Schadt EE, Kaltman JR, Newburger JW, Giardini A, Goldmuntz E, Brueckner M, Kim R, Porter GA Jr, Bernstein D, Chung WK, Srivastava D, Tristani-Firouzi M, Troyanskaya OG, Dickel DE, Shen Y, Seidman JG, Seidman CE, Gelb BD. Richter F, et al. Among authors: kaltman jr. Nat Genet. 2020 Aug;52(8):769-777. doi: 10.1038/s41588-020-0652-z. Epub 2020 Jun 29. Nat Genet. 2020. PMID: 32601476 Free PMC article. Clinical Trial.
De Novo Damaging Variants, Clinical Phenotypes, and Post-Operative Outcomes in Congenital Heart Disease.
Boskovski MT, Homsy J, Nathan M, Sleeper LA, Morton S, Manheimer KB, Tai A, Gorham J, Lewis M, Swartz M, Alfieris GM, Bacha EA, Karimi M, Meyer D, Nguyen K, Bernstein D, Romano-Adesman A, Porter GA Jr, Goldmuntz E, Chung WK, Srivastava D, Kaltman JR, Tristani-Firouzi M, Lifton R, Roberts AE, Gaynor JW, Gelb BD, Kim R, Seidman JG, Brueckner M, Mayer JE Jr, Newburger JW, Seidman CE. Boskovski MT, et al. Among authors: kaltman jr. Circ Genom Precis Med. 2020 Aug;13(4):e002836. doi: 10.1161/CIRCGEN.119.002836. Epub 2020 Jun 30. Circ Genom Precis Med. 2020. PMID: 32812804 Free PMC article.
Neither cardiac mitochondrial DNA variation nor copy number contribute to congenital heart disease risk.
Willcox JAL, Geiger JT, Morton SU, McKean D, Quiat D, Gorham JM, Tai AC, DePalma S, Bernstein D, Brueckner M, Chung WK, Giardini A, Goldmuntz E, Kaltman JR, Kim R, Newburger JW, Shen Y, Srivastava D, Tristani-Firouzi M, Gelb B, Porter GA Jr, Seidman JG, Seidman CE. Willcox JAL, et al. Among authors: kaltman jr. Am J Hum Genet. 2022 May 5;109(5):961-966. doi: 10.1016/j.ajhg.2022.03.011. Epub 2022 Apr 8. Am J Hum Genet. 2022. PMID: 35397206 Free PMC article.
De novo mutations in histone-modifying genes in congenital heart disease.
Zaidi S, Choi M, Wakimoto H, Ma L, Jiang J, Overton JD, Romano-Adesman A, Bjornson RD, Breitbart RE, Brown KK, Carriero NJ, Cheung YH, Deanfield J, DePalma S, Fakhro KA, Glessner J, Hakonarson H, Italia MJ, Kaltman JR, Kaski J, Kim R, Kline JK, Lee T, Leipzig J, Lopez A, Mane SM, Mitchell LE, Newburger JW, Parfenov M, Pe'er I, Porter G, Roberts AE, Sachidanandam R, Sanders SJ, Seiden HS, State MW, Subramanian S, Tikhonova IR, Wang W, Warburton D, White PS, Williams IA, Zhao H, Seidman JG, Brueckner M, Chung WK, Gelb BD, Goldmuntz E, Seidman CE, Lifton RP. Zaidi S, et al. Among authors: kaltman jr. Nature. 2013 Jun 13;498(7453):220-3. doi: 10.1038/nature12141. Epub 2013 May 12. Nature. 2013. PMID: 23665959 Free PMC article.
Report of the National Heart, Lung, and Blood Institute Working Group: An Integrated Network for Congenital Heart Disease Research.
Pasquali SK, Jacobs JP, Farber GK, Bertoch D, Blume ED, Burns KM, Campbell R, Chang AC, Chung WK, Riehle-Colarusso T, Curtis LH, Forrest CB, Gaynor WJ, Gaies MG, Go AS, Henchey P, Martin GR, Pearson G, Pemberton VL, Schwartz SM, Vincent R, Kaltman JR. Pasquali SK, et al. Among authors: kaltman jr. Circulation. 2016 Apr 5;133(14):1410-8. doi: 10.1161/CIRCULATIONAHA.115.019506. Circulation. 2016. PMID: 27045129 Free PMC article.
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