Human Genome Epidemiology Literature Finder
|
Records 1 - 14 (of 14 Records) |
| Query Trace: Disease and SLC17A1[original query] |
|---|
| Meta-analysis of 28,141 individuals identifies common variants within five new loci that influence uric acid concentrations.
PLoS genetics 2009 Jun 5 (6): e1000504. Kolz Melanie, Johnson Toby, Sanna Serena, Teumer Alexander, Vitart Veronique, Perola Markus, Mangino Massimo, Albrecht Eva, Wallace Chris, Farrall Martin, Johansson Asa, Nyholt Dale R, Aulchenko Yurii, Beckmann Jacques S, Bergmann Sven, Bochud Murielle, Brown Morris, Campbell Harry, , Connell John, Dominiczak Anna, Homuth Georg, Lamina Claudia, McCarthy Mark I, , Meitinger Thomas, Mooser Vincent, Munroe Patricia, Nauck Matthias, Peden John, Prokisch Holger, Salo Perttu, Salomaa Veikko, Samani Nilesh J, Schlessinger David, Uda Manuela, Völker Uwe, Waeber Gérard, Waterworth Dawn, Wang-Sattler Rui, Wright Alan F, Adamski Jerzy, Whitfield John B, Gyllensten Ulf, Wilson James F, Rudan Igor, Pramstaller Peter, Watkins Hugh, , Doering Angela, Wichmann H-Erich, , Spector Tim D, Peltonen Leena, Völzke Henry, Nagaraja Ramaiah, Vollenweider Peter, Caulfield Mark, , Illig Thomas, Gieger Christi |
| Common polymorphisms influencing serum uric acid levels contribute to susceptibility to gout, but not to coronary artery disease. PloS one 2009 4 (11): e7729. Stark Klaus, Reinhard Wibke, Grassl Martina, Erdmann Jeanette, Schunkert Heribert, Illig Thomas, Hengstenberg Christi |
| Multiple genetic loci influence serum urate levels and their relationship with gout and cardiovascular disease risk factors.
Circulation. Cardiovascular genetics 2010 Dec 3 (6): 523-30. Yang Qiong, Köttgen Anna, Dehghan Abbas, Smith Albert V, Glazer Nicole L, Chen Ming-Huei, Chasman Daniel I, Aspelund Thor, Eiriksdottir Gudny, Harris Tamara B, Launer Lenore, Nalls Michael, Hernandez Dena, Arking Dan E, Boerwinkle Eric, Grove Megan L, Li Man, Linda Kao W H, Chonchol Michel, Haritunians Talin, Li Guo, Lumley Thomas, Psaty Bruce M, Shlipak Michael, Hwang Shih-Jen, Larson Martin G, O'Donnell Christopher J, Upadhyay Ashish, van Duijn Cornelia M, Hofman Albert, Rivadeneira Fernando, Stricker Bruno, Uitterlinden Andre G, Paré Guillaume, Parker Alex N, Ridker Paul M, Siscovick David S, Gudnason Vilmundur, Witteman Jacqueline C, Fox Caroline S, Coresh Jos |
| A genome-wide association study of red blood cell traits using the electronic medical record.
PloS one 2010 5 (9): 9. Kullo Iftikhar J, Ding Keyue, Jouni Hayan, Smith Carin Y, Chute Christopher |
| Pathway analysis of genome-wide association studies on uric acid concentrations. Human immunology 2012 Aug 73 (8): 805-10. Lee Young Ho, Song Gwan G |
| Genetic variability related to serum uric acid concentration and risk of Parkinson's disease. Movement disorders : official journal of the Movement Disorder Society 2013 Oct 28 (12): 1737-40. González-Aramburu Isabel, Sánchez-Juan Pascual, Jesús Silvia, Gorostidi Ana, Fernández-Juan Eduardo, Carrillo Fátima, Sierra María, Gómez-Garre Pilar, Cáceres-Redondo María T, Berciano José, Ruiz-Martínez Javier, Combarros Onofre, Mir Pablo, Infante J |
| Serum uric acid and risk of dementia in Parkinson's disease. Parkinsonism & related disorders 2014 Jun 20 (6): 637-9. González-Aramburu Isabel, Sánchez-Juan Pascual, Sierra María, Fernández-Juan Eduardo, Sánchez-Quintana Coro, Berciano José, Combarros Onofre, Infante J |
| Polymorphisms in GCKR, SLC17A1 and SLC22A12 were associated with phenotype gout in Han Chinese males: a case-control study. BMC medical genetics 2015 16 (1): 66. Zhou Zhao-Wei, Cui Ling-Ling, Han Lin, Wang Can, Song Zhi-Jian, Shen Jia-Wei, Li Zhi-Qiang, Chen Jian-Hua, Wen Zu-Jia, Wang Xiao-Min, Shi Yong-Yong, Li Chang-G |
| Analysis of ABCG2 and other urate transporters in uric acid homeostasis in chronic kidney disease: potential role of remote sensing and signaling. Clinical kidney journal 2016 Jun 9 (3): 444-53. Bhatnagar Vibha, Richard Erin L, Wu Wei, Nievergelt Caroline M, Lipkowitz Michael S, Jeff Janina, Maihofer Adam X, Nigam Sanjay |
| Genetic Analyses in Dent Disease and Characterization of CLCN5 Mutations in Kidney Biopsies. International journal of molecular sciences 2020 1 21 (2): . Gianesello Lisa, Ceol Monica, Bertoldi Loris, Terrin Liliana, Priante Giovanna, Murer Luisa, Peruzzi Licia, Giordano Mario, Paglialonga Fabio, Cantaluppi Vincenzo, Musetti Claudio, Valle Giorgio, Del Prete Dorella, Anglani Franca, Network Dent Disease Itali |
| Causal Associations of Urate With Cardiovascular Risk Factors: Two-Sample Mendelian Randomization. Frontiers in genetics 2021 12 687279. Lukkunaprasit Thitiya, Rattanasiri Sasivimol, Ongphiphadhanakul Boonsong, McKay Gareth J, Attia John, Thakkinstian Ammar |
| The Epidemiology and Genetics of Hyperuricemia and Gout across Major Racial Groups: A Literature Review and Population Genetics Secondary Database Analysis. Journal of personalized medicine 2021 4 11 (3): . Butler Faven, Alghubayshi Ali, Roman Youss |
| Examining an Association of Single Nucleotide Polymorphisms with Hyperuricemia in Chinese Flight Attendants. Pharmacogenomics and personalized medicine 2022 15 589-602. Ye Jianpin, Zeng Zhiwei, Chen Yuxian, Wu Zhenkun, Yang Qingwei, Sun T |
| GLUT9 as a potential drug target for chronic kidney disease: Drug target validation by a Mendelian randomization study. Journal of human genetics 2023 6 . Masatoshi Ueda, Kenji Fukui, Naoyuki Kamatani, Shigeo Kamitsuji, Akira Matsuo, Tomohiko Sasase, Jun Nishiu, Mutsuyoshi Matsushi |
- Page last reviewed:Feb 1, 2024
- Content source:

