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Genetics/Genomes/Proteomics/Metabolomics

Targeted Deep Sequencing in Multiple-Affected Sibships of European Ancestry Identifies Rare Deleterious Variants in PTPN22 That Confer Risk for Type 1 Diabetes

  1. Yan Ge1,
  2. Suna Onengut-Gumuscu2,3,
  3. Aaron R. Quinlan4,5,
  4. Aaron J. Mackey2,3,
  5. Jocyndra A. Wright1,
  6. Jane H. Buckner6,
  7. Tania Habib6,
  8. Stephen S. Rich2,3 and
  9. Patrick Concannon1,7⇑
  1. 1Department of Pathology, Immunology and Laboratory Medicine, University of Florida, Gainesville, FL
  2. 2Center for Public Health Genomics, University of Virginia, Charlottesville, VA
  3. 3Department of Public Health Sciences, University of Virginia, Charlottesville, VA
  4. 4Department of Human Genetics, University of Utah, Salt Lake City, UT
  5. 5Department of Biomedical Informatics, University of Utah, Salt Lake City, UT
  6. 6Translational Research Program, Benaroya Research Institute at Virginia Mason, Seattle, WA
  7. 7Genetics Institute, University of Florida, Gainesville, FL
  1. Corresponding author: Patrick Concannon, patcon{at}ufl.edu.
Diabetes 2016 Mar; 65(3): 794-802. https://doi.org/10.2337/db15-0322
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Targeted Deep Sequencing in Multiple-Affected Sibships of European Ancestry Identifies Rare Deleterious Variants in PTPN22 That Confer Risk for Type 1 Diabetes
Yan Ge, Suna Onengut-Gumuscu, Aaron R. Quinlan, Aaron J. Mackey, Jocyndra A. Wright, Jane H. Buckner, Tania Habib, Stephen S. Rich, Patrick Concannon
Diabetes Mar 2016, 65 (3) 794-802; DOI: 10.2337/db15-0322

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Targeted Deep Sequencing in Multiple-Affected Sibships of European Ancestry Identifies Rare Deleterious Variants in PTPN22 That Confer Risk for Type 1 Diabetes
Yan Ge, Suna Onengut-Gumuscu, Aaron R. Quinlan, Aaron J. Mackey, Jocyndra A. Wright, Jane H. Buckner, Tania Habib, Stephen S. Rich, Patrick Concannon
Diabetes Mar 2016, 65 (3) 794-802; DOI: 10.2337/db15-0322
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