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Genetics/Genomes/Proteomics/Metabolomics

Phenotypic and Genetic Characterization of Lower LDL Cholesterol and Increased Type 2 Diabetes Risk in the UK Biobank

  1. Yann C. Klimentidis1,2⇑,
  2. Amit Arora1,
  3. Michelle Newell1,
  4. Jin Zhou1,
  5. Jose M. Ordovas3,4,
  6. Benjamin J. Renquist5 and
  7. Alexis C. Wood6
  1. 1Department of Epidemiology and Biostatistics, Mel and Enid Zuckerman College of Public Health, University of Arizona, Tucson, AZ
  2. 2BIO5 Institute, University of Arizona, Tucson, AZ
  3. 3Nutrition and Genomics Laboratory, Jean Mayer U.S. Department of Agriculture Human Nutrition Research Center on Aging, Tufts University, Boston, MA
  4. 4Instituto Madrileño de Estudios Avanzados (IMDEA) Food Institute, Campus de Excelencia Internacional Universidad Autónoma de Madrid + Consejo Superior de Investigaciones Científicas, Madrid, Spain
  5. 5School of Animal and Comparative Biomedical Sciences, University of Arizona, Tucson, AZ
  6. 6U.S. Department of Agriculture/Agricultural Research Service Children’s Nutrition Research Center, Baylor College of Medicine, Houston, TX
  1. Corresponding author: Yann C. Klimentidis, yann{at}email.arizona.edu
Diabetes 2020 Oct; 69(10): 2194-2205. https://doi.org/10.2337/db19-1134
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Abstract

Although hyperlipidemia is traditionally considered a risk factor for type 2 diabetes (T2D), evidence has emerged from statin trials and candidate gene investigations suggesting that lower LDL cholesterol (LDL-C) increases T2D risk. We thus sought to more comprehensively examine the phenotypic and genotypic relationships of LDL-C with T2D. Using data from the UK Biobank, we found that levels of circulating LDL-C were negatively associated with T2D prevalence (odds ratio 0.41 [95% CI 0.39, 0.43] per mmol/L unit of LDL-C), despite positive associations of circulating LDL-C with HbA1c and BMI. We then performed the first genome-wide exploration of variants simultaneously associated with lower circulating LDL-C and increased T2D risk, using data on LDL-C from the UK Biobank (n = 431,167) and the Global Lipids Genetics Consortium (n = 188,577), and data on T2D from the Diabetes Genetics Replication and Meta-Analysis consortium (n = 898,130). We identified 31 loci associated with lower circulating LDL-C and increased T2D, capturing several potential mechanisms. Seven of these loci have previously been identified for this dual phenotype, and nine have previously been implicated in nonalcoholic fatty liver disease. These findings extend our current understanding of the higher T2D risk among individuals with low circulating LDL-C and of the underlying mechanisms, including those responsible for the diabetogenic effect of LDL-C–lowering medications.

Footnotes

  • See accompanying article, p. 2058.

  • This article contains supplementary material online at https://doi.org/10.2337/figshare.12389273.

  • Received November 12, 2019.
  • Accepted May 29, 2020.
  • © 2020 by the American Diabetes Association
https://www.diabetesjournals.org/content/license

Readers may use this article as long as the work is properly cited, the use is educational and not for profit, and the work is not altered. More information is available at https://www.diabetesjournals.org/content/license.

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Phenotypic and Genetic Characterization of Lower LDL Cholesterol and Increased Type 2 Diabetes Risk in the UK Biobank
Yann C. Klimentidis, Amit Arora, Michelle Newell, Jin Zhou, Jose M. Ordovas, Benjamin J. Renquist, Alexis C. Wood
Diabetes Oct 2020, 69 (10) 2194-2205; DOI: 10.2337/db19-1134

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Phenotypic and Genetic Characterization of Lower LDL Cholesterol and Increased Type 2 Diabetes Risk in the UK Biobank
Yann C. Klimentidis, Amit Arora, Michelle Newell, Jin Zhou, Jose M. Ordovas, Benjamin J. Renquist, Alexis C. Wood
Diabetes Oct 2020, 69 (10) 2194-2205; DOI: 10.2337/db19-1134
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