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Studies of association of AGPAT6 variants with type 2 diabetes and related metabolic phenotypes in 12,068 Danes

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Harvard

Snogdal, LS, Grarup, N, Banasik, K, Wod, M, Jørgensen, T, Witte, DR, Lauritzen, T, Nielsen, AA, Brandslund, I, Christensen, C, Pedersen, OB, Yderstræde, KB, Beck-Nielsen, H, Henriksen, JE, Hansen, T & Højlund, K 2013, 'Studies of association of AGPAT6 variants with type 2 diabetes and related metabolic phenotypes in 12,068 Danes' B M C Medical Genetics, bind 14, nr. 1, s. 113. https://doi.org/10.1186/1471-2350-14-113

APA

CBE

Snogdal LS, Grarup N, Banasik K, Wod M, Jørgensen T, Witte DR, Lauritzen T, Nielsen AA, Brandslund I, Christensen C, Pedersen OB, Yderstræde KB, Beck-Nielsen H, Henriksen JE, Hansen T, Højlund K. 2013. Studies of association of AGPAT6 variants with type 2 diabetes and related metabolic phenotypes in 12,068 Danes. B M C Medical Genetics. 14(1):113. https://doi.org/10.1186/1471-2350-14-113

MLA

Vancouver

Author

Snogdal, Lena Sønder ; Grarup, Niels ; Banasik, Karina ; Wod, Mette ; Jørgensen, Torben ; Witte, Daniel Rinse ; Lauritzen, Torsten ; Nielsen, Aneta Aleksandra ; Brandslund, Ivan ; Christensen, Cramer ; Pedersen, Oluf Borbye ; Yderstræde, Knud Bonnet ; Beck-Nielsen, Henning ; Henriksen, Jan Erik ; Hansen, Torben ; Højlund, Kurt. / Studies of association of AGPAT6 variants with type 2 diabetes and related metabolic phenotypes in 12,068 Danes. I: B M C Medical Genetics. 2013 ; Bind 14, Nr. 1. s. 113.

Bibtex

@article{3b91dec4dd10472b8494ad30ada1417c,
title = "Studies of association of AGPAT6 variants with type 2 diabetes and related metabolic phenotypes in 12,068 Danes",
abstract = "Type 2 diabetes, obesity and insulin resistance are characterized by hypertriglyceridemia and ectopic accumulation of lipids in liver and skeletal muscle. AGPAT6 encodes a novel glycerol-3 phosphate acyltransferase, GPAT4, which catalyzes the first step in the de novo triglyceride synthesis. AGPAT6-deficient mice show lower weight and resistance to diet- and genetically induced obesity. Here, we examined whether common or low-frequency variants in AGPAT6 associate with type 2 diabetes or related metabolic traits in a Danish population.",
author = "Snogdal, {Lena S{\o}nder} and Niels Grarup and Karina Banasik and Mette Wod and Torben J{\o}rgensen and Witte, {Daniel Rinse} and Torsten Lauritzen and Nielsen, {Aneta Aleksandra} and Ivan Brandslund and Cramer Christensen and Pedersen, {Oluf Borbye} and Yderstr{\ae}de, {Knud Bonnet} and Henning Beck-Nielsen and Henriksen, {Jan Erik} and Torben Hansen and Kurt H{\o}jlund",
year = "2013",
month = "10",
day = "25",
doi = "10.1186/1471-2350-14-113",
language = "English",
volume = "14",
pages = "113",
journal = "B M C Medical Genetics",
issn = "1471-2350",
publisher = "BioMed Central Ltd",
number = "1",

}

RIS

TY - JOUR

T1 - Studies of association of AGPAT6 variants with type 2 diabetes and related metabolic phenotypes in 12,068 Danes

AU - Snogdal, Lena Sønder

AU - Grarup, Niels

AU - Banasik, Karina

AU - Wod, Mette

AU - Jørgensen, Torben

AU - Witte, Daniel Rinse

AU - Lauritzen, Torsten

AU - Nielsen, Aneta Aleksandra

AU - Brandslund, Ivan

AU - Christensen, Cramer

AU - Pedersen, Oluf Borbye

AU - Yderstræde, Knud Bonnet

AU - Beck-Nielsen, Henning

AU - Henriksen, Jan Erik

AU - Hansen, Torben

AU - Højlund, Kurt

PY - 2013/10/25

Y1 - 2013/10/25

N2 - Type 2 diabetes, obesity and insulin resistance are characterized by hypertriglyceridemia and ectopic accumulation of lipids in liver and skeletal muscle. AGPAT6 encodes a novel glycerol-3 phosphate acyltransferase, GPAT4, which catalyzes the first step in the de novo triglyceride synthesis. AGPAT6-deficient mice show lower weight and resistance to diet- and genetically induced obesity. Here, we examined whether common or low-frequency variants in AGPAT6 associate with type 2 diabetes or related metabolic traits in a Danish population.

AB - Type 2 diabetes, obesity and insulin resistance are characterized by hypertriglyceridemia and ectopic accumulation of lipids in liver and skeletal muscle. AGPAT6 encodes a novel glycerol-3 phosphate acyltransferase, GPAT4, which catalyzes the first step in the de novo triglyceride synthesis. AGPAT6-deficient mice show lower weight and resistance to diet- and genetically induced obesity. Here, we examined whether common or low-frequency variants in AGPAT6 associate with type 2 diabetes or related metabolic traits in a Danish population.

U2 - 10.1186/1471-2350-14-113

DO - 10.1186/1471-2350-14-113

M3 - Journal article

VL - 14

SP - 113

JO - B M C Medical Genetics

JF - B M C Medical Genetics

SN - 1471-2350

IS - 1

ER -

ID: 40907234