SwePub
Tyck till om SwePub Sök här!
Sök i LIBRIS databas

  Extended search

WFRF:(Mitchell Braxton D.)
 

Search: WFRF:(Mitchell Braxton D.) > (2020-2021) > Anderson Christopher D. > Genetic basis of la...

  • 1 of 1
  • Previous record
  • Next record
  •    To hitlist

Genetic basis of lacunar stroke : a pooled analysis of individual patient data and genome-wide association studies

Traylor, Matthew (author)
Queen Mary University
Persyn, Elodie (author)
King's College London
Tomppo, Liisa (author)
Helsinki University Central Hospital
show more...
Klasson, Sofia (author)
Gothenburg University,Göteborgs universitet,University of Gothenburg,Institutionen för biomedicin, avdelningen för laboratoriemedicin,Department of Laboratory Medicine
Abedi, Vida (author)
Sigfried and Janet Weis Center for Research
Bakker, Mark K. (author)
University Medical Center Utrecht
Torres, Nuria (author)
Hospital de Sant Pau
Li, Linxin (author)
University of Oxford
Bell, Steven (author)
University of Cambridge
Rutten-Jacobs, Loes (author)
F. Hoffmann-La Roche AG
Tozer, Daniel J. (author)
University of Cambridge
Jern, Christina, 1962 (author)
Gothenburg University,Göteborgs universitet,Institutionen för biomedicin, avdelningen för laboratoriemedicin,Department of Laboratory Medicine
Zhang, Yanfei (author)
Geisinger Health System
Pedersen, Annie, 1981 (author)
Gothenburg University,Göteborgs universitet,University of Gothenburg,Institutionen för biomedicin, avdelningen för laboratoriemedicin,Department of Laboratory Medicine
Sharma, Pankaj (author)
Royal Holloway University of London
Jimenez-Conde, Jordi (author)
Pompeu Fabra University,Autonomous University of Barcelona
Rundek, Tatjana (author)
University of Miami
Grewal, Raji P. (author)
Seton Hall University
Lindgren, Arne (author)
Lund University,Lunds universitet,Klinisk strokeforskning,Forskargrupper vid Lunds universitet,Clinical Stroke Research Group,Lund University Research Groups,Skåne University Hospital
Meschia, James F. (author)
Mayo Clinic Florida
Salomaa, Veikko (author)
Finnish National Institute for Health and Welfare
Havulinna, Aki (author)
Institute for Molecular Medicine Finland (FIMM),Finnish National Institute for Health and Welfare
Kourkoulis, Christina (author)
Broad Institute,Massachusetts General Hospital
Crawford, Katherine (author)
Broad Institute,Massachusetts General Hospital
Marini, Sandro (author)
Broad Institute,Massachusetts General Hospital
Mitchell, Braxton D. (author)
Baltimore Veterans Administration Medical Center,University of Maryland School of Medicine
Kittner, Steven J. (author)
Baltimore Veterans Administration Medical Center,University of Maryland School of Medicine
Rosand, Jonathan (author)
Massachusetts General Hospital,Broad Institute
Dichgans, Martin (author)
Munich Cluster for Systems Neurology,Ludwig-Maximilian University of Munich
Jern, Christina (author)
University of Gothenburg
Strbian, Daniel (author)
University of Helsinki,Helsinki University Central Hospital
Fernandez-Cadenas, Israel (author)
Hospital de Sant Pau,Autonomous University of Barcelona
Zand, Ramin (author)
Geisinger Health System
Ruigrok, Ynte (author)
University Medical Center Utrecht
Rost, Natalia (author)
Massachusetts General Hospital
Lemmens, Robin (author)
University Hospitals Leuven,Catholic University of Leuven
Rothwell, Peter M. (author)
University of Oxford
Anderson, Christopher D. (author)
Broad Institute,Massachusetts General Hospital
Wardlaw, Joanna (author)
University of Edinburgh
Lewis, Cathryn M. (author)
King's College London
Markus, Hugh S. (author)
University of Cambridge
show less...
 (creator_code:org_t)
 
show more...
 
 
 
show less...
2021
2021
English 11 s.
In: The Lancet Neurology. - 1474-4422. ; 20:5, s. 351-361
  • Journal article (peer-reviewed)
Abstract Subject headings
Close  
  • Background: The genetic basis of lacunar stroke is poorly understood, with a single locus on 16q24 identified to date. We sought to identify novel associations and provide mechanistic insights into the disease. Methods: We did a pooled analysis of data from newly recruited patients with an MRI-confirmed diagnosis of lacunar stroke and existing genome-wide association studies (GWAS). Patients were recruited from hospitals in the UK as part of the UK DNA Lacunar Stroke studies 1 and 2 and from collaborators within the International Stroke Genetics Consortium. Cases and controls were stratified by ancestry and two meta-analyses were done: a European ancestry analysis, and a transethnic analysis that included all ancestry groups. We also did a multi-trait analysis of GWAS, in a joint analysis with a study of cerebral white matter hyperintensities (an aetiologically related radiological trait), to find additional genetic associations. We did a transcriptome-wide association study (TWAS) to detect genes for which expression is associated with lacunar stroke; identified significantly enriched pathways using multi-marker analysis of genomic annotation; and evaluated cardiovascular risk factors causally associated with the disease using mendelian randomisation. Findings: Our meta-analysis comprised studies from Europe, the USA, and Australia, including 7338 cases and 254 798 controls, of which 2987 cases (matched with 29 540 controls) were confirmed using MRI. Five loci (ICA1L-WDR12-CARF-NBEAL1, ULK4, SPI1-SLC39A13-PSMC3-RAPSN, ZCCHC14, ZBTB14-EPB41L3) were found to be associated with lacunar stroke in the European or transethnic meta-analyses. A further seven loci (SLC25A44-PMF1-BGLAP, LOX-ZNF474-LOC100505841, FOXF2-FOXQ1, VTA1-GPR126, SH3PXD2A, HTRA1-ARMS2, COL4A2) were found to be associated in the multi-trait analysis with cerebral white matter hyperintensities (n=42 310). Two of the identified loci contain genes (COL4A2 and HTRA1) that are involved in monogenic lacunar stroke. The TWAS identified associations between the expression of six genes (SCL25A44, ULK4, CARF, FAM117B, ICA1L, NBEAL1) and lacunar stroke. Pathway analyses implicated disruption of the extracellular matrix, phosphatidylinositol 5 phosphate binding, and roundabout binding (false discovery rate <0·05). Mendelian randomisation analyses identified positive associations of elevated blood pressure, history of smoking, and type 2 diabetes with lacunar stroke. Interpretation: Lacunar stroke has a substantial heritable component, with 12 loci now identified that could represent future treatment targets. These loci provide insights into lacunar stroke pathogenesis, highlighting disruption of the vascular extracellular matrix (COL4A2, LOX, SH3PXD2A, GPR126, HTRA1), pericyte differentiation (FOXF2, GPR126), TGF-β signalling (HTRA1), and myelination (ULK4, GPR126) in disease risk. Funding: British Heart Foundation.

Subject headings

MEDICIN OCH HÄLSOVETENSKAP  -- Klinisk medicin -- Neurologi (hsv//swe)
MEDICAL AND HEALTH SCIENCES  -- Clinical Medicine -- Neurology (hsv//eng)
MEDICIN OCH HÄLSOVETENSKAP  -- Medicinska och farmaceutiska grundvetenskaper -- Medicinsk genetik (hsv//swe)
MEDICAL AND HEALTH SCIENCES  -- Basic Medicine -- Medical Genetics (hsv//eng)

Publication and Content Type

art (subject category)
ref (subject category)

Find in a library

To the university's database

  • 1 of 1
  • Previous record
  • Next record
  •    To hitlist

Kungliga biblioteket hanterar dina personuppgifter i enlighet med EU:s dataskyddsförordning (2018), GDPR. Läs mer om hur det funkar här.
Så här hanterar KB dina uppgifter vid användning av denna tjänst.

 
pil uppåt Close

Copy and save the link in order to return to this view