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Heritability,genetic correlation and linkage to the 9p21.3 region of mixed platelet–leukocyte conjugates in families with and without early myocardial infarction
Authors:F Gianfagna  C Tamburrelli  B Vohnout  M Crescente  B Izzi  A Pampuch  A De Curtis  A Di Castelnuovo  A Cutrone  E Napoleone  B Tayo  R Lorenzet  L Nanni  M Arca  MB Donati  G de Gaetano  C Cerletti  L Iacoviello
Institution:1. Laboratory of Genetic and Environmental Epidemiology, Fondazione di Ricerca e Cura “Giovanni Paolo II”, Università Cattolica, Campobasso, Italy;2. Laboratory of Cell Biology and Pharmacology of Thrombosis, Fondazione di Ricerca e Cura “Giovanni Paolo II”, Università Cattolica, Campobasso, Italy;3. Laboratory of Thrombosis and Cancer, Fondazione di Ricerca e Cura “Giovanni Paolo II”, Università Cattolica, Campobasso, Italy;4. Department of Preventive Medicine and Epidemiology, Loyola University Chicago, Stritch School of Medicine, Maywood, IL, USA;5. Research Laboratories, Fondazione di Ricerca e Cura “Giovanni Paolo II”, Università Cattolica, Campobasso, Italy;6. Department of Internal Medicine and Allied Sciences, Sapienza Università di Roma, Rome, Italy
Abstract:Background and aimsVariations in mixed platelet–leukocyte conjugate formation in human whole blood could be genetically determined. We quantified platelet and leukocyte activation and interaction in families with or without early myocardial infarction and evaluated their heritability, genetic correlation and linkage to the 9p21.3 region.Methods and resultsThe study population included 739 subjects (≥15 years old) from 54 large pedigrees, 23 with and 31 without familial myocardial infarction. Mixed platelet–leukocyte conjugates and markers of platelet or leukocyte activation (P-selectin, CD11b and L-selectin surface expression) were measured both before and after in vitro blood stimulation with collagen-ADP.All traits had significant genetic components (17.5–65.3% of the phenotypic variability), while shared household effects (0–39.6%) and environmental covariates (0–10.2%) tended to be smaller. Stimulated platelet-polymorphonuclear leukocyte (PMN) and platelet–monocyte conjugates showed the highest linkage to the 9p21.3 region (LOD = 0.94 and 1.33, respectively; empirical p value = 0.017 and 0.009). PMN markers resulted strongly genetically correlated between them in bivariate analysis among pairs of quantitative traits.ConclusionThis study supports a genetic regulation of human mixed platelet–leukocyte conjugates.
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