Adili Reheman1, Subia Tasneem, Heyu Ni, Catherine P M Hayward. 1. Department of Laboratory Medicine and Pathobiology, Keenan Research Centre, Li Ka-Shing Knowledge Institute, St Michael's Hospital, University of Toronto, Toronto, Canada.
Abstract
BACKGROUND: Multimerin 1 is a stored platelet and endothelial cell adhesive protein that shows significant conservation. In vitro, multimerin 1 supports platelet adhesion and it also binds to collagen and enhances von Willebrand factor-dependent platelet adhesion to collagen. As selective, multimerin 1 deficient mice have not been generated, we investigated multimerin 1 effects on platelet adhesion using a subpopulation of C57BL/6J mice with tandem deletion of the genes for multimerin 1 and alpha-synuclein, a protein that inhibits alpha-granule release in vitro. We postulated that multimerin 1/alpha-synuclein deficient mice might show impaired platelet adhesive function from multimerin 1 deficiency and increased alpha-granule release from alpha-synuclein deficiency. METHODS: Platelet function was assessed by intravital microscopy, after ferric chloride injury, using untreated and human multimerin 1-transfused multimerin 1/alpha-synuclein deficient mice, and by in vitro assays of adhesion, aggregation and thrombin-induced P-selectin release. RESULTS: Multimerin 1/alpha-synuclein deficient mice showed impaired platelet adhesion and their defective thrombus formation at sites of vessel injury improved with multimerin 1 transfusion. Although multimerin 1/alpha-synuclein deficient platelets showed increased P-selectin release at low thrombin concentrations, they also showed impaired adhesion to collagen, and attenuated aggregation with thrombin, that improved with added multimerin 1. CONCLUSIONS: Our data suggest that multimerin 1 supports platelet adhesive functions and thrombus formation, which will be important to verify by generating and testing selective multimerin 1 deficient mice. Copyright (c) 2010. Published by Elsevier Ltd.
BACKGROUND:Multimerin 1 is a stored platelet and endothelial cell adhesive protein that shows significant conservation. In vitro, multimerin 1 supports platelet adhesion and it also binds to collagen and enhances von Willebrand factor-dependent platelet adhesion to collagen. As selective, multimerin 1 deficient mice have not been generated, we investigated multimerin 1 effects on platelet adhesion using a subpopulation of C57BL/6J mice with tandem deletion of the genes for multimerin 1 and alpha-synuclein, a protein that inhibits alpha-granule release in vitro. We postulated that multimerin 1/alpha-synuclein deficient mice might show impaired platelet adhesive function from multimerin 1deficiency and increased alpha-granule release from alpha-synucleindeficiency. METHODS: Platelet function was assessed by intravital microscopy, after ferric chloride injury, using untreated and humanmultimerin 1-transfused multimerin 1/alpha-synuclein deficient mice, and by in vitro assays of adhesion, aggregation and thrombin-induced P-selectin release. RESULTS:Multimerin 1/alpha-synuclein deficient mice showed impaired platelet adhesion and their defective thrombus formation at sites of vessel injury improved with multimerin 1 transfusion. Although multimerin 1/alpha-synuclein deficient platelets showed increased P-selectin release at low thrombin concentrations, they also showed impaired adhesion to collagen, and attenuated aggregation with thrombin, that improved with added multimerin 1. CONCLUSIONS: Our data suggest that multimerin 1 supports platelet adhesive functions and thrombus formation, which will be important to verify by generating and testing selective multimerin 1 deficient mice. Copyright (c) 2010. Published by Elsevier Ltd.
Authors: Yan Yang; Zhenyin Shi; Adili Reheman; Joseph W Jin; Conglei Li; Yiming Wang; Marc C Andrews; Pingguo Chen; Guangheng Zhu; Wenhua Ling; Heyu Ni Journal: PLoS One Date: 2012-05-18 Impact factor: 3.240
Authors: Suzana Gispert; Alexander Kurz; Nadine Brehm; Katrin Rau; Michael Walter; Olaf Riess; Georg Auburger Journal: Mol Neurobiol Date: 2014-08-12 Impact factor: 5.590
Authors: D'Andra N Parker; Subia Tasneem; Richard W Farndale; Dominique Bihan; J Evan Sadler; Silvie Sebastian; Philip G de Groot; Catherine P M Hayward Journal: Thromb Haemost Date: 2016-04-07 Impact factor: 5.249