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Träfflista för sökning "WFRF:(Armstrong Jane F) srt2:(2015-2019)"

Search: WFRF:(Armstrong Jane F) > (2015-2019)

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2.
  • Turcot, Valerie, et al. (author)
  • Protein-altering variants associated with body mass index implicate pathways that control energy intake and expenditure in obesity
  • 2018
  • In: Nature Genetics. - : Nature Publishing Group. - 1061-4036 .- 1546-1718. ; 50:1, s. 26-41
  • Journal article (peer-reviewed)abstract
    • Genome-wide association studies (GWAS) have identified >250 loci for body mass index (BMI), implicating pathways related to neuronal biology. Most GWAS loci represent clusters of common, noncoding variants from which pinpointing causal genes remains challenging. Here we combined data from 718,734 individuals to discover rare and low-frequency (minor allele frequency (MAF) < 5%) coding variants associated with BMI. We identified 14 coding variants in 13 genes, of which 8 variants were in genes (ZBTB7B, ACHE, RAPGEF3, RAB21, ZFHX3, ENTPD6, ZFR2 and ZNF169) newly implicated in human obesity, 2 variants were in genes (MC4R and KSR2) previously observed to be mutated in extreme obesity and 2 variants were in GIPR. The effect sizes of rare variants are similar to 10 times larger than those of common variants, with the largest effect observed in carriers of an MC4R mutation introducing a stop codon (p.Tyr35Ter, MAF = 0.01%), who weighed similar to 7 kg more than non-carriers. Pathway analyses based on the variants associated with BMI confirm enrichment of neuronal genes and provide new evidence for adipocyte and energy expenditure biology, widening the potential of genetically supported therapeutic targets in obesity.
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3.
  • Justice, Anne E., et al. (author)
  • Protein-coding variants implicate novel genes related to lipid homeostasis contributing to body-fat distribution
  • 2019
  • In: Nature Genetics. - : Nature Publishing Group. - 1061-4036 .- 1546-1718. ; 51:3, s. 452-469
  • Journal article (peer-reviewed)abstract
    • Body-fat distribution is a risk factor for adverse cardiovascular health consequences. We analyzed the association of body-fat distribution, assessed by waist-to-hip ratio adjusted for body mass index, with 228,985 predicted coding and splice site variants available on exome arrays in up to 344,369 individuals from five major ancestries (discovery) and 132,177 European-ancestry individuals (validation). We identified 15 common (minor allele frequency, MAF >= 5%) and nine low-frequency or rare (MAF < 5%) coding novel variants. Pathway/gene set enrichment analyses identified lipid particle, adiponectin, abnormal white adipose tissue physiology and bone development and morphology as important contributors to fat distribution, while cross-trait associations highlight cardiometabolic traits. In functional follow-up analyses, specifically in Drosophila RNAi-knockdowns, we observed a significant increase in the total body triglyceride levels for two genes (DNAH10 and PLXND1). We implicate novel genes in fat distribution, stressing the importance of interrogating low-frequency and protein-coding variants.
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4.
  • Huyghe, Jeroen R., et al. (author)
  • Discovery of common and rare genetic risk variants for colorectal cancer
  • 2019
  • In: Nature Genetics. - : Nature Publishing Group. - 1061-4036 .- 1546-1718. ; 51:1, s. 76-
  • Journal article (peer-reviewed)abstract
    • To further dissect the genetic architecture of colorectal cancer (CRC), we performed whole-genome sequencing of 1,439 cases and 720 controls, imputed discovered sequence variants and Haplotype Reference Consortium panel variants into genome-wide association study data, and tested for association in 34,869 cases and 29,051 controls. Findings were followed up in an additional 23,262 cases and 38,296 controls. We discovered a strongly protective 0.3% frequency variant signal at CHD1. In a combined meta-analysis of 125,478 individuals, we identified 40 new independent signals at P < 5 x 10(-8), bringing the number of known independent signals for CRC to similar to 100. New signals implicate lower-frequency variants, Kruppel-like factors, Hedgehog signaling, Hippo-YAP signaling, long noncoding RNAs and somatic drivers, and support a role for immune function. Heritability analyses suggest that CRC risk is highly polygenic, and larger, more comprehensive studies enabling rare variant analysis will improve understanding of biology underlying this risk and influence personalized screening strategies and drug development.
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6.
  • Pearce, Neil E, et al. (author)
  • IARC Monographs : 40 Years of Evaluating Carcinogenic Hazards to Humans
  • 2015
  • In: Journal of Environmental Health Perspectives. - : Environmental Health Perspectives. - 0091-6765 .- 1552-9924. ; 123:6, s. 507-514
  • Journal article (peer-reviewed)abstract
    • BACKGROUND: Recently the International Agency for Research on Cancer (IARC) Programme for the Evaluation of Carcinogenic Risks to Humans has been criticized for several of its evaluations, and also the approach used to perform these evaluations. Some critics have claimed that IARC Working Groups' failures to recognize study weaknesses and biases of Working Group members have led to inappropriate classification of a number of agents as carcinogenic to humans.OBJECTIVES: The authors of this paper are scientists from various disciplines relevant to the identification and hazard evaluation of human carcinogens. We have examined here criticisms of the IARC classification process to determine the validity of these concerns. We review the history of IARC evaluations and describe how the IARC evaluations are performed.DISCUSSION: We conclude that these recent criticisms are unconvincing. The procedures employed by IARC to assemble Working Groups of scientists from the various discipline and the techniques followed to review the literature and perform hazard assessment of various agents provide a balanced evaluation and an appropriate indication of the weight of the evidence. Some disagreement by individual scientists to some evaluations is not evidence of process failure. The review process has been modified over time and will undoubtedly be altered in the future to improve the process. Any process can in theory be improved, and we would support continued review and improvement of the IARC processes. This does not mean, however, that the current procedures are flawed.CONCLUSIONS: The IARC Monographs have made, and continue to make, major contributions to the scientific underpinning for societal actions to improve the public's health.
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  • Result 1-6 of 6
Type of publication
journal article (6)
Type of content
peer-reviewed (6)
Author/Editor
Boeing, Heiner (3)
Salomaa, Veikko (3)
Mannisto, Satu (3)
Perola, Markus (3)
Lind, Lars (3)
Rudan, Igor (3)
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Wareham, Nicholas J. (3)
Easton, Douglas F. (3)
Kuusisto, Johanna (3)
Laakso, Markku (3)
Boehnke, Michael (3)
Tuomilehto, Jaakko (3)
Thorleifsson, Gudmar (3)
Thorsteinsdottir, Un ... (3)
Stefansson, Kari (3)
Rotter, Jerome I. (3)
Zhou, Wei (2)
Li, Jin (2)
Allison, Matthew (2)
Raitakari, Olli T (2)
Deloukas, Panos (2)
Schoen, Robert E. (2)
Campbell, Peter T. (2)
Schulze, Matthias B. (2)
North, Kari E. (2)
Franks, Paul W. (2)
Meidtner, Karina (2)
Dunning, Alison M. (2)
Auer, Paul L. (2)
McCarthy, Mark I (2)
Ferrannini, Ele (2)
Bork-Jensen, Jette (2)
Thuesen, Betina H. (2)
Brandslund, Ivan (2)
Linneberg, Allan (2)
Grarup, Niels (2)
Pedersen, Oluf (2)
Hansen, Torben (2)
Ridker, Paul M. (2)
Chasman, Daniel I. (2)
Ikram, M. Arfan (2)
van Duijn, Cornelia ... (2)
Langenberg, Claudia (2)
Mohlke, Karen L (2)
Scott, Robert A (2)
Jorgensen, Torben (2)
Zhao, Wei (2)
Rasheed, Asif (2)
Saleheen, Danish (2)
Locke, Adam E. (2)
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University
Umeå University (5)
Uppsala University (3)
Lund University (3)
Karolinska Institutet (3)
University of Gothenburg (1)
Stockholm University (1)
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Linköping University (1)
Swedish University of Agricultural Sciences (1)
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Language
English (6)
Research subject (UKÄ/SCB)
Medical and Health Sciences (6)
Natural sciences (2)

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