Sequencing in over 50,000 cases identifies coding and structural variation underlying atrial fibrillation risk

  • Regeneron Genetics Center
  • , NHLBI Trans-Omics for Precision Medicine (TOPMed) Consortium
  • , Seung Hoan Choi
  • , Sean J. Jurgens
  • , Ling Xiao
  • , Matthew C. Hill
  • , Christopher M. Haggerty
  • , Garðar Sveinbjörnsson
  • , Valerie N. Morrill
  • , Nicholas A. Marston
  • , Lu Chen Weng
  • , James P. Pirruccello
  • , David O. Arnar
  • , Daniel Fannar Gudbjartsson
  • , Helene Mantineo
  • , Aenne S. von Falkenhausen
  • , Andrea Natale
  • , Arnljot Tveit
  • , Bastiaan Geelhoed
  • , Carolina Roselli
  • David R. Van Wagoner, Dawood Darbar, Doreen Haase, Elsayed Z. Soliman, Giovanni E. Davogustto, Goo Jun, Hugh Calkins, Jeffrey L. Anderson, Jennifer A. Brody, Jennifer L. Halford, John Barnard, John E. Hokanson, Jonathan D. Smith, Joshua C. Bis, Kendra Young, Linda S.B. Johnson, Lorenz Risch, Lorne J. Gula, Lydia Coulter Kwee, Mark D. Chaffin, Michael Kühne, Michael Preuss, Namrata Gupta, Navid A. Nafissi, Nicholas L. Smith, Peter M. Nilsson, Pim van der Harst, Quinn S. Wells, Renae L. Judy, Renate B. Schnabel, Renee Johnson, Roelof A.J. Smit, Stacey Gabriel, Stacey Knight, Tetsushi Furukawa, Thomas W. Blackwell, Victor Nauffal, Xin Wang, Yuan I. Min, Zachary T. Yoneda, Zachary W.M. Laksman, Connie R. Bezzina, Alvaro Alonso, Bruce M. Psaty, Christine M. Albert, Dan E. Arking, Dan M. Roden, Daniel I. Chasman, Daniel J. Rader, David Conen, David D. McManus, Diane Fatkin, Emelia J. Benjamin, Eric Boerwinkle, Gregory M. Marcus, Ingrid E. Christophersen, J. Gustav Smith, Jason D. Roberts, Laura M. Raffield, M. Benjamin Shoemaker, Michael H. Cho, Michael J. Cutler, Michiel Rienstra, Mina K. Chung, Morten S. Olesen, Moritz F. Sinner, Nona Sotoodehnia, Paulus Kirchhof, Ruth J.F. Loos, Saman Nazarian, Sanghamitra Mohanty, Scott M. Damrauer, Stefan Kaab, Susan R. Heckbert, Susan Redline, Svati H. Shah, Toshihiro Tanaka, Yusuke Ebana, Sarah E. Wolf, Louis Widom, Niek Verweij, Ricardo H. Ulloa, Jeffrey C. Staples, Katherine Siminovitch, Alan Shuldiner, Thomas D. Schleicher, William Salerno, Jeffrey G. Reid, Ayesha Rasool, Manasi Pradhan, Tommy Polanco, Razvan Panea, Maria Sotiropoulos Padilla, John D. Overton, Max Orelus, Sean O’Keeffe, Jonas Nielsen, Mona Nafde, Lyndon J. Mitnaul, Jason Mighty, Evan K. Maxwell, Adam J. Mansfield, Kia Manoochehri, Luca A. Lotta, Alexander Lopez, Dadong Li, Michael Lattari, Rouel Lanche, Olga Krasheninina, Shareef Khalid, Katia Karalis, Marcus B. Jones, Alicia Hawes, Lukas Habegger, Zhenhua Gu, Erin D. Fuller, Caitlin Forsythe, Manuel A.R. Ferreira, Gisu Eom, Aris Economides, Andrew Deubler, Tanima De, Giovanni Coppola, Michael Cantor, Boris Boutkov, Christina Beechert, Aris Baras, Suganthi Balasubramanian, Xiaodong Bai, Goncalo Abecasis, Sebastian Zoellner, Michael Zody, Xiaofeng Zhu, Wei Zhao, Snow Xueyan Zhao, Yingze Zhang, Seyedeh Maryam Zekavat, Ketian Yu, Ivana Yang, Lisa Yanek, Huichun Xu, Joseph Wu, Quenna Wong, Lara Winterkorn, James Wilson, Carla Wilson, L. Keoki Williams, Kayleen Williams, Cristen Willer, Jennifer Wessel, Scott T. Weiss, Bruce Weir, Joshua Weinstock, Daniel E. Weeks, Jennifer Watt, Karol Watson, Jiongming Wang, Heming Wang, Fei Fei Wang, Avram Walts, Robert Wallace, Tarik Walker, Scott Vrieze, Peter VandeHaar, David Van Den Berg, Dhananjay Vaidya, Michael Tsai, Russell Tracy, Catherine Tong, Hemant Tiwari, Sarah Tishkoff, David Tirschwell, Lesley Tinker, Machiko Threlkeld, Timothy A. Thornton, Marilyn Telen, Yun Ju Sung, D. C. Rao, C. Charles Gu, Lucinda Fulton, Susan K. Dutcher, Lisa de las Fuentes

Research output: Contribution to journalArticlepeer-review

Abstract

Atrial fibrillation (AF) is a prevalent and morbid abnormality of the heart rhythm with a strong genetic component. Here, we meta-analyzed genome and exome sequencing data from 36 studies that included 52,416 AF cases and 277,762 controls. In burden tests of rare coding variation, we identified novel associations between AF and the genes MYBPC3, LMNA, PKP2, FAM189A2 and KDM5B. We further identified associations between AF and rare structural variants owing to deletions in CTNNA3 and duplications of GATA4. We broadly replicated our findings in independent samples from MyCode, deCODE and UK Biobank. Finally, we found that CRISPR knockout of KDM5B in stem-cell-derived atrial cardiomyocytes led to a shortening of the action potential duration and widespread transcriptomic dysregulation of genes relevant to atrial homeostasis and conduction. Our results highlight the contribution of rare coding and structural variants to AF, including genetic links between AF and cardiomyopathies, and expand our understanding of the rare variant architecture for this common arrhythmia.

Original languageEnglish
Article numbere020163
Pages (from-to)548-562
Number of pages15
JournalNature Genetics
Volume57
Issue number3
DOIs
StatePublished - Mar 2025

Fingerprint

Dive into the research topics of 'Sequencing in over 50,000 cases identifies coding and structural variation underlying atrial fibrillation risk'. Together they form a unique fingerprint.

Cite this