Assessing the causal association of glycine with risk of cardio-metabolic diseases
Epidemiological studies have associated circulating levels of the amino acid glycine with cardiometabolic outcomes. Here, in a genome-wide meta-analysis of 80,003 individuals, Wittemans et al. identify 22 novel genetic loci for glycine and find a causal relationship with coronary heart disease using...
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2019
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oai:doaj.org-article:b179b3632faa45f4b864e7498db649ab2021-12-02T16:57:45ZAssessing the causal association of glycine with risk of cardio-metabolic diseases10.1038/s41467-019-08936-12041-1723https://doaj.org/article/b179b3632faa45f4b864e7498db649ab2019-03-01T00:00:00Zhttps://doi.org/10.1038/s41467-019-08936-1https://doaj.org/toc/2041-1723Epidemiological studies have associated circulating levels of the amino acid glycine with cardiometabolic outcomes. Here, in a genome-wide meta-analysis of 80,003 individuals, Wittemans et al. identify 22 novel genetic loci for glycine and find a causal relationship with coronary heart disease using MR.Laura B. L. WittemansLuca A. LottaClare Oliver-WilliamsIsobel D. StewartPraveen SurendranSavita KarthikeyanFelix R. DayAlbert KoulmanFumiaki ImamuraLingyao ZengJeanette ErdmannHeribert SchunkertKay-Tee KhawJulian L. GriffinNita G. ForouhiRobert A. ScottAngela M. WoodStephen BurgessJoanna M. M. HowsonJohn DaneshNicholas J. WarehamAdam S. ButterworthClaudia LangenbergNature PortfolioarticleScienceQENNature Communications, Vol 10, Iss 1, Pp 1-13 (2019) |
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Science Q Laura B. L. Wittemans Luca A. Lotta Clare Oliver-Williams Isobel D. Stewart Praveen Surendran Savita Karthikeyan Felix R. Day Albert Koulman Fumiaki Imamura Lingyao Zeng Jeanette Erdmann Heribert Schunkert Kay-Tee Khaw Julian L. Griffin Nita G. Forouhi Robert A. Scott Angela M. Wood Stephen Burgess Joanna M. M. Howson John Danesh Nicholas J. Wareham Adam S. Butterworth Claudia Langenberg Assessing the causal association of glycine with risk of cardio-metabolic diseases |
description |
Epidemiological studies have associated circulating levels of the amino acid glycine with cardiometabolic outcomes. Here, in a genome-wide meta-analysis of 80,003 individuals, Wittemans et al. identify 22 novel genetic loci for glycine and find a causal relationship with coronary heart disease using MR. |
format |
article |
author |
Laura B. L. Wittemans Luca A. Lotta Clare Oliver-Williams Isobel D. Stewart Praveen Surendran Savita Karthikeyan Felix R. Day Albert Koulman Fumiaki Imamura Lingyao Zeng Jeanette Erdmann Heribert Schunkert Kay-Tee Khaw Julian L. Griffin Nita G. Forouhi Robert A. Scott Angela M. Wood Stephen Burgess Joanna M. M. Howson John Danesh Nicholas J. Wareham Adam S. Butterworth Claudia Langenberg |
author_facet |
Laura B. L. Wittemans Luca A. Lotta Clare Oliver-Williams Isobel D. Stewart Praveen Surendran Savita Karthikeyan Felix R. Day Albert Koulman Fumiaki Imamura Lingyao Zeng Jeanette Erdmann Heribert Schunkert Kay-Tee Khaw Julian L. Griffin Nita G. Forouhi Robert A. Scott Angela M. Wood Stephen Burgess Joanna M. M. Howson John Danesh Nicholas J. Wareham Adam S. Butterworth Claudia Langenberg |
author_sort |
Laura B. L. Wittemans |
title |
Assessing the causal association of glycine with risk of cardio-metabolic diseases |
title_short |
Assessing the causal association of glycine with risk of cardio-metabolic diseases |
title_full |
Assessing the causal association of glycine with risk of cardio-metabolic diseases |
title_fullStr |
Assessing the causal association of glycine with risk of cardio-metabolic diseases |
title_full_unstemmed |
Assessing the causal association of glycine with risk of cardio-metabolic diseases |
title_sort |
assessing the causal association of glycine with risk of cardio-metabolic diseases |
publisher |
Nature Portfolio |
publishDate |
2019 |
url |
https://doaj.org/article/b179b3632faa45f4b864e7498db649ab |
work_keys_str_mv |
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