Back to Search Start Over

Genome-wide association analyses identify new Brugada syndrome risk loci and highlight a new mechanism of sodium channel regulation in disease susceptibility

Authors :
Barc, Julien
Tadros, Rafik
Glinge, Charlotte
Chiang, David Y
Jouni, Mariam
Simonet, Floriane
Jurgens, Sean J
Baudic, Manon
Nicastro, Michele
Potet, Franck
Offerhaus, Joost A
Walsh, Roddy
Choi, Seung Hoan
Verkerk, Arie O
Mizusawa, Yuka
Anys, Soraya
Minois, Damien
Arnaud, Marine
Duchateau, Josselin
Wijeyeratne, Yanushi D
Muir, Alison
Papadakis, Michael
Castelletti, Silvia
Torchio, Margherita
Ortuño, Cristina Gil
Lacunza, Javier
Giachino, Daniela F
Cerrato, Natascia
Martins, Raphaël P
Campuzano, Oscar
Van Dooren, Sonia
Thollet, Aurélie
Kyndt, Florence
Mazzanti, Andrea
Clémenty, Nicolas
Bisson, Arnaud
Corveleyn, Anniek
Stallmeyer, Birgit
Dittmann, Sven
Saenen, Johan
Noël, Antoine
Honarbakhsh, Shohreh
Rudic, Boris
Marzak, Halim
Rowe, Matthew K
Federspiel, Claire
Le Page, Sophie
Winkel, Bo Gregers
Tfelt-Hansen, Jacob
Bezzina, Connie R
Barc, Julien
Tadros, Rafik
Glinge, Charlotte
Chiang, David Y
Jouni, Mariam
Simonet, Floriane
Jurgens, Sean J
Baudic, Manon
Nicastro, Michele
Potet, Franck
Offerhaus, Joost A
Walsh, Roddy
Choi, Seung Hoan
Verkerk, Arie O
Mizusawa, Yuka
Anys, Soraya
Minois, Damien
Arnaud, Marine
Duchateau, Josselin
Wijeyeratne, Yanushi D
Muir, Alison
Papadakis, Michael
Castelletti, Silvia
Torchio, Margherita
Ortuño, Cristina Gil
Lacunza, Javier
Giachino, Daniela F
Cerrato, Natascia
Martins, Raphaël P
Campuzano, Oscar
Van Dooren, Sonia
Thollet, Aurélie
Kyndt, Florence
Mazzanti, Andrea
Clémenty, Nicolas
Bisson, Arnaud
Corveleyn, Anniek
Stallmeyer, Birgit
Dittmann, Sven
Saenen, Johan
Noël, Antoine
Honarbakhsh, Shohreh
Rudic, Boris
Marzak, Halim
Rowe, Matthew K
Federspiel, Claire
Le Page, Sophie
Winkel, Bo Gregers
Tfelt-Hansen, Jacob
Bezzina, Connie R
Source :
Barc , J , Tadros , R , Glinge , C , Chiang , D Y , Jouni , M , Simonet , F , Jurgens , S J , Baudic , M , Nicastro , M , Potet , F , Offerhaus , J A , Walsh , R , Choi , S H , Verkerk , A O , Mizusawa , Y , Anys , S , Minois , D , Arnaud , M , Duchateau , J , Wijeyeratne , Y D , Muir , A , Papadakis , M , Castelletti , S , Torchio , M , Ortuño , C G , Lacunza , J , Giachino , D F , Cerrato , N , Martins , R P , Campuzano , O , Van Dooren , S , Thollet , A , Kyndt , F , Mazzanti , A , Clémenty , N , Bisson , A , Corveleyn , A , Stallmeyer , B , Dittmann , S , Saenen , J , Noël , A , Honarbakhsh , S , Rudic , B , Marzak , H , Rowe , M K , Federspiel , C , Le Page , S , Winkel , B G , Tfelt-Hansen , J , Bezzina , C R & KORA-Study Group 2022 , ' Genome-wide association analyses identify new Brugada syndrome risk loci and highlight a new mechanism of sodium channel regulation in disease susceptibility ' , Nature Genetics , vol. 54 , pp. 232–239 .
Publication Year :
2022

Abstract

Brugada syndrome (BrS) is a cardiac arrhythmia disorder associated with sudden death in young adults. With the exception of SCN5A, encoding the cardiac sodium channel NaV1.5, susceptibility genes remain largely unknown. Here we performed a genome-wide association meta-analysis comprising 2,820 unrelated cases with BrS and 10,001 controls, and identified 21 association signals at 12 loci (10 new). Single nucleotide polymorphism (SNP)-heritability estimates indicate a strong polygenic influence. Polygenic risk score analyses based on the 21 susceptibility variants demonstrate varying cumulative contribution of common risk alleles among different patient subgroups, as well as genetic associations with cardiac electrical traits and disorders in the general population. The predominance of cardiac transcription factor loci indicates that transcriptional regulation is a key feature of BrS pathogenesis. Furthermore, functional studies conducted on MAPRE2, encoding the microtubule plus-end binding protein EB2, point to microtubule-related trafficking effects on NaV1.5 expression as a new underlying molecular mechanism. Taken together, these findings broaden our understanding of the genetic architecture of BrS and provide new insights into its molecular underpinnings.

Details

Database :
OAIster
Journal :
Barc , J , Tadros , R , Glinge , C , Chiang , D Y , Jouni , M , Simonet , F , Jurgens , S J , Baudic , M , Nicastro , M , Potet , F , Offerhaus , J A , Walsh , R , Choi , S H , Verkerk , A O , Mizusawa , Y , Anys , S , Minois , D , Arnaud , M , Duchateau , J , Wijeyeratne , Y D , Muir , A , Papadakis , M , Castelletti , S , Torchio , M , Ortuño , C G , Lacunza , J , Giachino , D F , Cerrato , N , Martins , R P , Campuzano , O , Van Dooren , S , Thollet , A , Kyndt , F , Mazzanti , A , Clémenty , N , Bisson , A , Corveleyn , A , Stallmeyer , B , Dittmann , S , Saenen , J , Noël , A , Honarbakhsh , S , Rudic , B , Marzak , H , Rowe , M K , Federspiel , C , Le Page , S , Winkel , B G , Tfelt-Hansen , J , Bezzina , C R & KORA-Study Group 2022 , ' Genome-wide association analyses identify new Brugada syndrome risk loci and highlight a new mechanism of sodium channel regulation in disease susceptibility ' , Nature Genetics , vol. 54 , pp. 232–239 .
Notes :
application/pdf, English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1322773775
Document Type :
Electronic Resource