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Träfflista för sökning "WFRF:(Deloukas P) ;srt2:(2010-2014)"

Search: WFRF:(Deloukas P) > (2010-2014)

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51.
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52.
  • Dick, Katherine J., et al. (author)
  • DNA methylation and body-mass index : a genome-wide analysis
  • 2014
  • In: The Lancet. - 0140-6736 .- 1474-547X. ; 383:9933, s. 1990-1998
  • Journal article (peer-reviewed)abstract
    • Background Obesity is a major health problem that is determined by interactions between lifestyle and environmental and genetic factors. Although associations between several genetic variants and body-mass index (BMI) have been identified, little is known about epigenetic changes related to BMI. We undertook a genome-wide analysis of methylation at CpG sites in relation to BMI. Methods 479 individuals of European origin recruited by the Cardiogenics Consortium formed our discovery cohort. We typed their whole-blood DNA with the Infinium HumanMethylation450 array. After quality control, methylation levels were tested for association with BMI. Methylation sites showing an association with BMI at a false discovery rate q value of 0.05 or less were taken forward for replication in a cohort of 339 unrelated white patients of northern European origin from the MARTHA cohort. Sites that remained significant in this primary replication cohort were tested in a second replication cohort of 1789 white patients of European origin from the KORA cohort. We examined whether methylation levels at identified sites also showed an association with BMI in DNA from adipose tissue (n=635) and skin (n=395) obtained from white female individuals participating in the MuTHER study. Finally, we examined the association of methylation at BMI-associated sites with genetic variants and with gene expression. Findings 20 individuals from the discovery cohort were excluded from analyses after quality-control checks, leaving 459 participants. After adjustment for covariates, we identified an association (q value <= 0.05) between methylation at five probes across three different genes and BMI. The associations with three of these probes-cg22891070, cg27146050, and cg16672562, all of which are in intron 1 of HIF3A-were confirmed in both the primary and second replication cohorts. For every 0.1 increase in methylation beta value at cg22891070, BMI was 3.6% (95% CI 2.4-4.9) higher in the discovery cohort, 2.7% (1.2-4.2) higher in the primary replication cohort, and 0.8% (0.2-1.4) higher in the second replication cohort. For the MuTHER cohort, methylation at cg22891070 was associated with BMI in adipose tissue (p=1.72 x 10(-5)) but not in skin (p=0.882). We observed a significant inverse correlation (p=0.005) between methylation at cg22891070 and expression of one HIF3A gene-expression probe in adipose tissue. Two single nucleotide polymorphisms-rs8102595 and rs3826795-had independent associations with methylation at cg22891070 in all cohorts. However, these single nucleotide polymorphisms were not significantly associated with BMI. Interpretation Increased BMI in adults of European origin is associated with increased methylation at the HIF3A locus in blood cells and in adipose tissue. Our findings suggest that perturbation of hypoxia inducible transcription factor pathways could have an important role in the response to increased weight in people.
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53.
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54.
  • Hamberg, Anna-Karin, et al. (author)
  • A Pharmacometric Model Describing the Relationship Between Warfarin Dose and INR Response With Respect to Variations in CYP2C9, VKORC1, and Age
  • 2010
  • In: Clinical Pharmacology and Therapeutics. - : Springer Science and Business Media LLC. - 0009-9236 .- 1532-6535. ; 87:6, s. 727-734
  • Journal article (peer-reviewed)abstract
    • The objective of the study was to update a previous NONMEM model to describe the relationship between warfarin dose and international normalized ratio (INR) response, to decrease the dependence of the model on pharmacokinetic (PK) data, and to improve the characterization of rare genotype combinations. The effects of age and CYP2C9 genotype on S-warfarin clearance were estimated from high-quality PK data. Thereafter, a temporal dose-response (K-PD) model was developed from information on dose, INR, age, and CYP2C9 and VKORC1 genotype, with drug clearance as a covariate. Two transit compartment chains accounted for the delay between exposure and response. CYP2C9 genotype was identified as the single most important predictor of required dose, causing a difference of up to 4.2-fold in the maintenance dose. VKORC1 accounted for a difference of up to 2.1-fold in dose, and age reduced the dose requirement by ~6% per decade. This reformulated K-PD model decreases dependence on PK data and enables robust assessment of INR response and dose predictions, even in individuals with rare genotype combinations.
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55.
  • Kooner, Jaspal S, et al. (author)
  • Genome-wide association study in individuals of South Asian ancestry identifies six new type 2 diabetes susceptibility loci.
  • 2011
  • In: Nature Genetics. - : Springer Science and Business Media LLC. - 1061-4036 .- 1546-1718. ; 43:10
  • Journal article (peer-reviewed)abstract
    • We carried out a genome-wide association study of type-2 diabetes (T2D) in individuals of South Asian ancestry. Our discovery set included 5,561 individuals with T2D (cases) and 14,458 controls drawn from studies in London, Pakistan and Singapore. We identified 20 independent SNPs associated with T2D at P < 10(-4) for testing in a replication sample of 13,170 cases and 25,398 controls, also all of South Asian ancestry. In the combined analysis, we identified common genetic variants at six loci (GRB14, ST6GAL1, VPS26A, HMG20A, AP3S2 and HNF4A) newly associated with T2D (P = 4.1 × 10(-8) to P = 1.9 × 10(-11)). SNPs at GRB14 were also associated with insulin sensitivity (P = 5.0 × 10(-4)), and SNPs at ST6GAL1 and HNF4A were also associated with pancreatic beta-cell function (P = 0.02 and P = 0.001, respectively). Our findings provide additional insight into mechanisms underlying T2D and show the potential for new discovery from genetic association studies in South Asians, a population with increased susceptibility to T2D.
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56.
  • Langenberg, Claudia, et al. (author)
  • Gene-Lifestyle Interaction and Type 2 Diabetes: The EPIC InterAct Case-Cohort Study.
  • 2014
  • In: PLoS Medicine. - : Public Library of Science (PLoS). - 1549-1676 .- 1549-1277. ; 11:5
  • Journal article (peer-reviewed)abstract
    • Understanding of the genetic basis of type 2 diabetes (T2D) has progressed rapidly, but the interactions between common genetic variants and lifestyle risk factors have not been systematically investigated in studies with adequate statistical power. Therefore, we aimed to quantify the combined effects of genetic and lifestyle factors on risk of T2D in order to inform strategies for prevention.
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57.
  • Peden, John F., et al. (author)
  • A genome-wide association study in Europeans and South Asians identifies five new loci for coronary artery disease
  • 2011
  • In: Nature Genetics. - : Springer Science and Business Media LLC. - 1061-4036 .- 1546-1718. ; 43:4, s. 339-344
  • Journal article (peer-reviewed)abstract
    • Genome-wide association studies have identified 11 common variants convincingly associated with coronary artery disease (CAD)(1-7), a modest number considering the apparent heritability of CAD(8). All of these variants have been discovered in European populations. We report a meta-analysis of four large genome-wide association studies of CAD, with similar to 575,000 genotyped SNPs in a discovery dataset comprising 15,420 individuals with CAD (cases) (8,424 Europeans and 6,996 South Asians) and 15,062 controls. There was little evidence for ancestry-specific associations, supporting the use of combined analyses. Replication in an independent sample of 21,408 cases and 19,185 controls identified five loci newly associated with CAD (P < 5 x 10(-8) in the combined discovery and replication analysis): LIPA on 10q23, PDGFD on 11q22, ADAMTS7-MORF4L1 on 15q25, a gene rich locus on 7q22 and KIAA1462 on 10p11. The CAD-associated SNP in the PDGFD locus showed tissue-specific cis expression quantitative trait locus effects. These findings implicate new pathways for CAD susceptibility.
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58.
  • Pérez-Andreu, V., et al. (author)
  • miR-133a regulates Vitamin K 2,3-epoxide reductase complex subunit 1 (VKORC1), a key protein in the Vitamin K cycle
  • 2012
  • In: Molecular Medicine. - : Springer Science and Business Media LLC. - 1076-1551 .- 1528-3658. ; 18:11, s. 1466-1472
  • Journal article (peer-reviewed)abstract
    • Regulation of key proteins by microRNAs (miRNAs) is an emergent field in biomedicine. Vitamin K 2,3-epoxide reductase complex subunit 1 (VKORC1) is a relevant molecule for cardiovascular diseases, since it is the target of oral anticoagulant drugs and plays a role in soft tissue calcification. The objective of this study was to determine the influence of miRNAs on the expression of VKORC1. Potential miRNAs targeting VKORC1 mRNA were searched by using online algorithms. Validation studies were carried out in HepG2 cells by using miRNA precursors; direct miRNA interaction was investigated with reporter assays. In silico studies identified two putative conserved binding sites for miR-133a and miR-137 on VKORC1 mRNA. Ex vivo studies showed that only miR-133a was expressed in liver; transfection of miRNA precursors of miR-133a in HepG2 cells reduced VKORC1 mRNA expression in a dosedependent manner, as assessed by quantitative reverse transcriptase-polymerase chain reaction (qRT-PCR) as well as protein expression. Reporter assays in HEK293T cells showed that miR-133a interacts with the 3′UTR of VKORC1. Additionally, miR-133a levels correlated inversely with VKORC1 mRNA levels in 23 liver samples from healthy subjects. In conclusion, miR-133a appears to have a direct regulatory effect on expression of VKORC1 in humans; this regulation may have potential importance for anticoagulant therapy or aortic calcification.
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59.
  • Small, K. S., et al. (author)
  • Identification of an imprinted master trans regulator at the KLF14 locus related to multiple metabolic phenotypes
  • 2011
  • In: Nat Genet. ; 43:6, s. 561-4
  • Journal article (peer-reviewed)abstract
    • Genome-wide association studies have identified many genetic variants associated with complex traits. However, at only a minority of loci have the molecular mechanisms mediating these associations been characterized. In parallel, whereas cis regulatory patterns of gene expression have been extensively explored, the identification of trans regulatory effects in humans has attracted less attention. Here we show that the type 2 diabetes and high-density lipoprotein cholesterol-associated cis-acting expression quantitative trait locus (eQTL) of the maternally expressed transcription factor KLF14 acts as a master trans regulator of adipose gene expression. Expression levels of genes regulated by this trans-eQTL are highly correlated with concurrently measured metabolic traits, and a subset of the trans-regulated genes harbor variants directly associated with metabolic phenotypes. This trans-eQTL network provides a mechanistic understanding of the effect of the KLF14 locus on metabolic disease risk and offers a potential model for other complex traits.
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60.
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  • Result 51-60 of 60
Type of publication
journal article (59)
conference paper (1)
Type of content
peer-reviewed (57)
other academic/artistic (3)
Author/Editor
Deloukas, Panos (30)
Deloukas, P. (28)
Groop, Leif (17)
Stefansson, Kari (17)
Wareham, Nicholas J. (16)
Thorsteinsdottir, Un ... (16)
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Loos, Ruth J F (16)
Salomaa, Veikko (14)
McCarthy, Mark I (14)
Thorleifsson, Gudmar (14)
Gieger, Christian (14)
Barroso, Ines (14)
Wilson, James F. (14)
Hofman, Albert (14)
Soranzo, Nicole (13)
Campbell, Harry (13)
Rudan, Igor (13)
Mangino, Massimo (13)
Wichmann, H. Erich (13)
Peltonen, Leena (13)
Gyllensten, Ulf (13)
Johnson, Toby (13)
Hayward, Caroline (13)
Johansson, Åsa (12)
Ingelsson, Erik (12)
Willemsen, Gonneke (12)
Boomsma, Dorret I. (12)
Jarvelin, Marjo-Riit ... (12)
Uitterlinden, André ... (12)
Pouta, Anneli (12)
Elliott, Paul (12)
Boerwinkle, Eric (12)
Lind, Lars (11)
Melander, Olle (11)
Strachan, David P (11)
van Duijn, Cornelia ... (11)
Ripatti, Samuli (11)
Spector, Tim D. (11)
Kaprio, Jaakko (11)
Samani, Nilesh J. (11)
Froguel, Philippe (11)
Luan, Jian'an (11)
Metspalu, Andres (11)
Hicks, Andrew A. (11)
Pramstaller, Peter P ... (11)
Wright, Alan F. (11)
Zhao, Jing Hua (11)
Gudnason, Vilmundur (11)
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Esko, Tõnu (11)
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University
Karolinska Institutet (37)
Uppsala University (36)
Lund University (27)
Umeå University (15)
University of Gothenburg (14)
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Language
English (60)
Research subject (UKÄ/SCB)
Medical and Health Sciences (38)
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