TY - JOUR
T1 - Heat shock protein 70 regulates platelet integrin activation, granule secretion and aggregation
AU - Rigg, Rachel A.
AU - Healy, Laura D.
AU - Nowak, Marie S.
AU - Mallet, Jérémy
AU - Thierheimer, Marisa L.D.
AU - Pang, Jiaqing
AU - McCarty, Owen J.T.
AU - Aslan, Joseph E.
N1 - Funding Information:
This work was supported by National Institutes of HealthNIH Grants R01 HL-101972 and National Institutes of HealthNIH R01 GM-116184 (to O. J. T. McCarty) and National Institutes of HealthNIH T32 AI-007472 (to L. D. Healy) and American Heart AssociationAHA Grants 13POST13730003 (to J. E. Aslan) and American Heart AssociationAHA 13EIA12630000 (to O. J. T. McCarty). M. L. D. Thierheimer is an Oregon State University Johnson Scholar. R. A. Rigg is a Whitaker International Fellow
Publisher Copyright:
© 2016 the American Physiological Society.
PY - 2016/4/1
Y1 - 2016/4/1
N2 - Molecular chaperones that support protein quality control, including heat shock protein 70 (Hsp70), participate in diverse aspects of cellular and physiological function. Recent studies have reported roles for specific chaperone activities in blood platelets in maintaining hemostasis; however, the functions of Hsp70 in platelet physiology remain uninvestigated. Here we characterize roles for Hsp70 activity in platelet activation and function. In vitro biochemical, microscopy, flow cytometry, and aggregometry assays of platelet function, as well as ex vivo analyses of platelet aggregate formation in whole blood under shear, were carried out under Hsp70-inhibited conditions. Inhibition of platelet Hsp70 blocked platelet aggregation and granule secretion in response to collagen-related peptide (CRP), which engages the immunoreceptor tyrosine-based activation motif-bearing collagen receptor glycoprotein VI (GPVI)-Fc receptor-γ chain complex. Hsp70 inhibition also reduced platelet integrin-αIIbβ3 activation downstream of GPVI, as Hsp70-inhibited platelets showed reduced PAC-1 and fibrinogen binding. Ex vivo, pharmacological inhibition of Hsp70 in human whole blood prevented the formation of platelet aggregates on collagen under shear. Biochemical studies supported a role for Hsp70 in maintaining the assembly of the linker for activation of T cells signalosome, which couples GPVI-initiated signaling to integrin activation, secretion, and platelet function. Together, our results suggest that Hsp70 regulates platelet activation and function by supporting linker for activation of T cells-associated signaling events downstream of platelet GPVI engagement, suggesting a role for Hsp70 in the intracellular organization of signaling systems that mediate platelet secretion, “inside-out” activation of platelet integrin- αIIbβ3, platelet- platelet aggregation, and, ultimately, hemostatic plug and thrombus formation.
AB - Molecular chaperones that support protein quality control, including heat shock protein 70 (Hsp70), participate in diverse aspects of cellular and physiological function. Recent studies have reported roles for specific chaperone activities in blood platelets in maintaining hemostasis; however, the functions of Hsp70 in platelet physiology remain uninvestigated. Here we characterize roles for Hsp70 activity in platelet activation and function. In vitro biochemical, microscopy, flow cytometry, and aggregometry assays of platelet function, as well as ex vivo analyses of platelet aggregate formation in whole blood under shear, were carried out under Hsp70-inhibited conditions. Inhibition of platelet Hsp70 blocked platelet aggregation and granule secretion in response to collagen-related peptide (CRP), which engages the immunoreceptor tyrosine-based activation motif-bearing collagen receptor glycoprotein VI (GPVI)-Fc receptor-γ chain complex. Hsp70 inhibition also reduced platelet integrin-αIIbβ3 activation downstream of GPVI, as Hsp70-inhibited platelets showed reduced PAC-1 and fibrinogen binding. Ex vivo, pharmacological inhibition of Hsp70 in human whole blood prevented the formation of platelet aggregates on collagen under shear. Biochemical studies supported a role for Hsp70 in maintaining the assembly of the linker for activation of T cells signalosome, which couples GPVI-initiated signaling to integrin activation, secretion, and platelet function. Together, our results suggest that Hsp70 regulates platelet activation and function by supporting linker for activation of T cells-associated signaling events downstream of platelet GPVI engagement, suggesting a role for Hsp70 in the intracellular organization of signaling systems that mediate platelet secretion, “inside-out” activation of platelet integrin- αIIbβ3, platelet- platelet aggregation, and, ultimately, hemostatic plug and thrombus formation.
KW - Chaperones
KW - Hemostasis
KW - Integrin
KW - Platelets
KW - Thrombosis
UR - http://www.scopus.com/inward/record.url?scp=84983735936&partnerID=8YFLogxK
UR - http://www.scopus.com/inward/citedby.url?scp=84983735936&partnerID=8YFLogxK
U2 - 10.1152/ajpcell.00362.2015
DO - 10.1152/ajpcell.00362.2015
M3 - Article
C2 - 26764050
AN - SCOPUS:84983735936
SN - 0363-6143
VL - 310
SP - C568-C575
JO - American Journal of Physiology - Cell Physiology
JF - American Journal of Physiology - Cell Physiology
IS - 7
ER -