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  5. Genome-Wide Association Study of <scp>l</scp> -Arginine and Dimethylarginines Reveals Novel Metabolic Pathway for Symmetric Dimethylarginine

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Article
en
2014

Genome-Wide Association Study of <scp>l</scp> -Arginine and Dimethylarginines Reveals Novel Metabolic Pathway for Symmetric Dimethylarginine

0 Datasets

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en
2014
Vol 7 (6)
Vol. 7
DOI: 10.1161/circgenetics.113.000264

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Emelia Benjamin
Emelia Benjamin

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Nicole Lüneburg
Wolfgang Lieb
Tanja Zeller
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Abstract

These genome-wide association study support the importance of DDAH1 and MED23/Arg1 in regulating ADMA and l-arginine metabolism, respectively, and identify a novel regulatory renal pathway for SDMA by AGXT2. AGXT2 variants might explain part of the pathogenic link between SDMA, renal function, and outcome. An association between AGXT2 variants and stroke is unclear and warrants further investigation.

How to cite this publication

Nicole Lüneburg, Wolfgang Lieb, Tanja Zeller, Ming‐Huei Chen, Renke Maas, Angela M. Carter, Vanessa Xanthakis, Nicole L. Glazer, Edzard Schwedhelm, Sudha Seshadri, M. Arfan Ikram, W.T. Longstreth, Myriam Fornage, Inke R. König, Christina Loley, Francisco Ojeda, Arne Schillert, Thomas J. Wang, Heinrich Sticht, Anja Kittel, Jörg König, Emelia Benjamin, Lisa Sullivan, Isabel Bernges, Maike Anderssohn, Andreas Ziegler, Christian Gieger, Thomas Illig, Christa Meisinger, H.‐Erich Wichmann, Philipp S. Wild, Heribert Schunkert, Bruce M. Psaty, Kerri L. Wiggins, Susan R. Heckbert, Nicholas L. Smith, Karl J. Lackner, Kathryn L. Lunetta, Stefan Blankenberg, Jeanette Erdmann, Thomas Münzel, Peter J. Grant, Ramachandran S. Vasan, Rainer H. Böger (2014). Genome-Wide Association Study of <scp>l</scp> -Arginine and Dimethylarginines Reveals Novel Metabolic Pathway for Symmetric Dimethylarginine. , 7(6), DOI: https://doi.org/10.1161/circgenetics.113.000264.

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Publication Details

Type

Article

Year

2014

Authors

44

Datasets

0

Total Files

0

Language

en

DOI

https://doi.org/10.1161/circgenetics.113.000264

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