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ZBTB17 (MIZ1) Is Important for the Cardiac Stress Response and a Novel Candidate Gene for Cardiomyopathy and Heart Failure.
Buyandelger B, Mansfield C, Kostin S, Choi O, Roberts AM, Ware JS, Mazzarotto F, Pesce F, Buchan R, Isaacson RL, Vouffo J, Gunkel S, Knöll G, McSweeney SJ, Wei H, Perrot A, Pfeiffer C, Toliat MR, Ilieva K, Krysztofinska E, López-Olañeta MM, Gómez-Salinero JM, Schmidt A, Ng KE, Teucher N, Chen J, Teichmann M, Eilers M, Haverkamp W, Regitz-Zagrosek V, Hasenfuss G, Braun T, Pennell DJ, Gould I, Barton PJ, Lara-Pezzi E, Schäfer S, Hübner N, Felkin LE, O'Regan DP, Brand T, Milting H, Nürnberg P, Schneider MD, Prasad S, Petretto E, Knöll R. Buyandelger B, et al. Among authors: petretto e. Circ Cardiovasc Genet. 2015 Oct;8(5):643-52. doi: 10.1161/CIRCGENETICS.113.000690. Epub 2015 Jul 14. Circ Cardiovasc Genet. 2015. PMID: 26175529 Free article.
Integrated genomic approaches implicate osteoglycin (Ogn) in the regulation of left ventricular mass.
Petretto E, Sarwar R, Grieve I, Lu H, Kumaran MK, Muckett PJ, Mangion J, Schroen B, Benson M, Punjabi PP, Prasad SK, Pennell DJ, Kiesewetter C, Tasheva ES, Corpuz LM, Webb MD, Conrad GW, Kurtz TW, Kren V, Fischer J, Hubner N, Pinto YM, Pravenec M, Aitman TJ, Cook SA. Petretto E, et al. Nat Genet. 2008 May;40(5):546-52. doi: 10.1038/ng.134. Nat Genet. 2008. PMID: 18443592 Free PMC article.
Endonuclease G is a novel determinant of cardiac hypertrophy and mitochondrial function.
McDermott-Roe C, Ye J, Ahmed R, Sun XM, Serafín A, Ware J, Bottolo L, Muckett P, Cañas X, Zhang J, Rowe GC, Buchan R, Lu H, Braithwaite A, Mancini M, Hauton D, Martí R, García-Arumí E, Hubner N, Jacob H, Serikawa T, Zidek V, Papousek F, Kolar F, Cardona M, Ruiz-Meana M, García-Dorado D, Comella JX, Felkin LE, Barton PJ, Arany Z, Pravenec M, Petretto E, Sanchis D, Cook SA. McDermott-Roe C, et al. Among authors: petretto e. Nature. 2011 Oct 5;478(7367):114-8. doi: 10.1038/nature10490. Nature. 2011. PMID: 21979051 Free PMC article.
Integrative genomics in cardiovascular medicine.
Ware JS, Petretto E, Cook SA. Ware JS, et al. Among authors: petretto e. Cardiovasc Res. 2013 Mar 15;97(4):623-30. doi: 10.1093/cvr/cvs303. Epub 2012 Sep 27. Cardiovasc Res. 2013. PMID: 23024270 Free PMC article. Review.
Natural genetic variation of the cardiac transcriptome in non-diseased donors and patients with dilated cardiomyopathy.
Heinig M, Adriaens ME, Schafer S, van Deutekom HWM, Lodder EM, Ware JS, Schneider V, Felkin LE, Creemers EE, Meder B, Katus HA, Rühle F, Stoll M, Cambien F, Villard E, Charron P, Varro A, Bishopric NH, George AL Jr, Dos Remedios C, Moreno-Moral A, Pesce F, Bauerfeind A, Rüschendorf F, Rintisch C, Petretto E, Barton PJ, Cook SA, Pinto YM, Bezzina CR, Hubner N. Heinig M, et al. Among authors: petretto e. Genome Biol. 2017 Sep 14;18(1):170. doi: 10.1186/s13059-017-1286-z. Genome Biol. 2017. PMID: 28903782 Free PMC article.
WWP2 regulates pathological cardiac fibrosis by modulating SMAD2 signaling.
Chen H, Moreno-Moral A, Pesce F, Devapragash N, Mancini M, Heng EL, Rotival M, Srivastava PK, Harmston N, Shkura K, Rackham OJL, Yu WP, Sun XM, Tee NGZ, Tan ELS, Barton PJR, Felkin LE, Lara-Pezzi E, Angelini G, Beltrami C, Pravenec M, Schafer S, Bottolo L, Hubner N, Emanueli C, Cook SA, Petretto E. Chen H, et al. Among authors: petretto e. Nat Commun. 2019 Aug 9;10(1):3616. doi: 10.1038/s41467-019-11551-9. Nat Commun. 2019. PMID: 31399586 Free PMC article.
Author Correction: WWP2 regulates pathological cardiac fibrosis by modulating SMAD2 signaling.
Chen H, Moreno-Moral A, Pesce F, Devapragash N, Mancini M, Heng EL, Rotival M, Srivastava PK, Harmston N, Shkura K, Rackham OJL, Yu WP, Sun XM, Tee NGZ, Tan ELS, Barton PJR, Felkin LE, Lara-Pezzi E, Angelini G, Beltrami C, Pravenec M, Schafer S, Bottolo L, Hubner N, Emanueli C, Cook SA, Petretto E. Chen H, et al. Among authors: petretto e. Nat Commun. 2019 Sep 9;10(1):4085. doi: 10.1038/s41467-019-12060-5. Nat Commun. 2019. PMID: 31501434 Free PMC article.
164 results