Back to Search
Start Over
ROBO4 variants predispose individuals to bicuspid aortic valve and thoracic aortic aneurysm
- Source :
- Nature Genetics, 51, 42, Nature Genetics, 51(1), 42-+. Nature Publishing Group, Nature Genetics, 51, 1, pp. 42, Gould, R A, Aziz, H, Woods, C E, Seman-Senderos, M A, Sparks, E, Preuss, C, Wünnemann, F, Bedja, D, Moats, C R, McClymont, S A, Rose, R, Sobreira, N, Ling, H, MacCarrick, G, Kumar, A A, Luyckx, I, Cannaerts, E, Verstraeten, A, Björk, H M, Lehsau, A-C, Jaskula-Ranga, V, Lauridsen, H, Shah, A A, Bennett, C L, Ellinor, P T, Lin, H, Isselbacher, E M, Cardenas, C L L, Butcher, J T, Hughes, G C, Lindsay, M E, Baylor-Hopkins Center for Mendelian Genomics, MIBAVA Leducq Consortium, Mertens, L, Franco-Cereceda, A, Verhagen, J M A, Wessels, M, Mohamed, S A, Eriksson, P, Mital, S, Van Laer, L, Loeys, B L, Andelfinger, G, McCallion, A S & Dietz, H C 2018, ' ROBO4 variants predispose individuals to bicuspid aortic valve and thoracic aortic aneurysm ', Nature Genetics . https://doi.org/10.1038/s41588-018-0265-y, Nature genetics
- Publication Year :
- 2019
-
Abstract
- Bicuspid aortic valve (BAV) is a common congenital heart defect (population incidence, 1-2%) that frequently presents with ascending aortic aneurysm (AscAA)4. BAV/AscAA shows autosomal dominant inheritance with incomplete penetrance and male predominance. Causative gene mutations (for example, NOTCH1, SMAD6) are known for ≤1% of nonsyndromic BAV cases with and without AscAA, impeding mechanistic insight and development of therapeutic strategies. Here, we report the identification of variants in ROBO4 (which encodes a factor known to contribute to endothelial performance) that segregate with disease in two families. Targeted sequencing of ROBO4 showed enrichment for rare variants in BAV/AscAA probands compared with controls. Targeted silencing of ROBO4 or mutant ROBO4 expression in endothelial cell lines results in impaired barrier function and a synthetic repertoire suggestive of endothelial-to-mesenchymal transition. This is consistent with BAV/AscAA-associated findings in patients and in animal models deficient for ROBO4. These data identify a novel endothelial etiology for this common human disease phenotype. Bicuspid aortic valve (BAV) is a common congenital heart defect (population incidence, 1-2%) that frequently presents with ascending aortic aneurysm (AscAA)4. BAV/AscAA shows autosomal dominant inheritance with incomplete penetrance and male predominance. Causative gene mutations (for example, NOTCH1, SMAD6) are known for ≤1% of nonsyndromic BAV cases with and without AscAA, impeding mechanistic insight and development of therapeutic strategies. Here, we report the identification of variants in ROBO4 (which encodes a factor known to contribute to endothelial performance) that segregate with disease in two families. Targeted sequencing of ROBO4 showed enrichment for rare variants in BAV/AscAA probands compared with controls. Targeted silencing of ROBO4 or mutant ROBO4 expression in endothelial cell lines results in impaired barrier function and a synthetic repertoire suggestive of endothelial-to-mesenchymal transition. This is consistent with BAV/AscAA-associated findings in patients and in animal models deficient for ROBO4. These data identify a novel endothelial etiology for this common human disease phenotype.
- Subjects :
- Proband
0303 health sciences
Pathology
medicine.medical_specialty
education.field_of_study
Population
Disease
Biology
medicine.disease
Thoracic aortic aneurysm
Phenotype
Penetrance
03 medical and health sciences
Aortic aneurysm
All institutes and research themes of the Radboud University Medical Center
0302 clinical medicine
Bicuspid aortic valve
Genetics
medicine
Human medicine
education
030217 neurology & neurosurgery
Rare cancers Radboud Institute for Health Sciences [Radboudumc 9]
030304 developmental biology
Subjects
Details
- ISSN :
- 10614036
- Database :
- OpenAIRE
- Journal :
- Nature Genetics, 51, 42, Nature Genetics, 51(1), 42-+. Nature Publishing Group, Nature Genetics, 51, 1, pp. 42, Gould, R A, Aziz, H, Woods, C E, Seman-Senderos, M A, Sparks, E, Preuss, C, Wünnemann, F, Bedja, D, Moats, C R, McClymont, S A, Rose, R, Sobreira, N, Ling, H, MacCarrick, G, Kumar, A A, Luyckx, I, Cannaerts, E, Verstraeten, A, Björk, H M, Lehsau, A-C, Jaskula-Ranga, V, Lauridsen, H, Shah, A A, Bennett, C L, Ellinor, P T, Lin, H, Isselbacher, E M, Cardenas, C L L, Butcher, J T, Hughes, G C, Lindsay, M E, Baylor-Hopkins Center for Mendelian Genomics, MIBAVA Leducq Consortium, Mertens, L, Franco-Cereceda, A, Verhagen, J M A, Wessels, M, Mohamed, S A, Eriksson, P, Mital, S, Van Laer, L, Loeys, B L, Andelfinger, G, McCallion, A S & Dietz, H C 2018, ' ROBO4 variants predispose individuals to bicuspid aortic valve and thoracic aortic aneurysm ', Nature Genetics . https://doi.org/10.1038/s41588-018-0265-y, Nature genetics
- Accession number :
- edsair.doi.dedup.....2ac737188dcd98e5b52030d1a762f253