Hyperglycemia repression of miR-24 coordinately upregulates endothelial cell expression and secretion of von Willebrand factor
Blood, The Journal of the American Society of Hematology, 2015•ashpublications.org
An elevated level of von Willebrand factor (VWF) in diabetic patients is associated with
increased risk of thrombotic cardiovascular events. The underlying mechanism of how VWF
expression is upregulated in diabetes mellitus is poorly understood. We now report that
hyperglycemia-induced repression of microRNA-24 (miR-24) increases VWF expression
and secretion in diabetes mellitus. In diabetic patients and diabetic mouse models
(streptozotocin/high-fat diet-induced and db/db mice), miR-24 is reduced in both tissues and …
increased risk of thrombotic cardiovascular events. The underlying mechanism of how VWF
expression is upregulated in diabetes mellitus is poorly understood. We now report that
hyperglycemia-induced repression of microRNA-24 (miR-24) increases VWF expression
and secretion in diabetes mellitus. In diabetic patients and diabetic mouse models
(streptozotocin/high-fat diet-induced and db/db mice), miR-24 is reduced in both tissues and …
Abstract
An elevated level of von Willebrand factor (VWF) in diabetic patients is associated with increased risk of thrombotic cardiovascular events. The underlying mechanism of how VWF expression is upregulated in diabetes mellitus is poorly understood. We now report that hyperglycemia-induced repression of microRNA-24 (miR-24) increases VWF expression and secretion in diabetes mellitus. In diabetic patients and diabetic mouse models (streptozotocin/high-fat diet-induced and db/db mice), miR-24 is reduced in both tissues and plasma. Knockdown of miR-24 in mice leads to increased VWF mRNA and protein levels and enhanced platelet tethering (spontaneous thrombosis). miR-24 tightly controls VWF levels through pleiotropic effects, including direct binding to the 3′ untranslated region of VWF and targeting FURIN and the histamine H1 receptor, known regulators of VWF processing and secretion in endothelial cells. We present a novel mechanism for miR-24 downregulation through hyperglycemia-induced activation of aldose reductase, reactive oxygen species, and c-Myc. These findings support a critical role for hyperglycemic repression of miR-24 in VWF-induced pathology. miR-24 represents a novel therapeutic target to prevent adverse thrombotic events in patients with diabetes mellitus.
ashpublications.org
以上显示的是最相近的搜索结果。 查看全部搜索结果