Plasma growth factors maintain constitutive translation in platelets to regulate reactivity and thrombotic potential

Author:

Wurtzel Jeremy G. T.1,Lazar Sophia1,Askari Shayan1,Zhao Xuefei1ORCID,Severa Jenna1ORCID,Ayombil Francis2ORCID,Michael James V.1ORCID,Camire Rodney M.23ORCID,McKenzie Steven E.1,Stalker Timothy J.1,Ma Peisong1ORCID,Goldfinger Lawrence E.1ORCID

Affiliation:

1. 1Division of Hematology, Department of Medicine, Cardeza Foundation for Hematologic Research, Sidney Kimmel Medical College, Thomas Jefferson University, Philadelphia, PA

2. 2Division of Hematology and the Raymond G. Perelman Center for Cellular and Molecular Therapeutics, The Children’s Hospital of Philadelphia, Philadelphia, PA

3. 3Department of Pediatrics, Perelman School of Medicine, University of Pennsylvania, Philadelphia, PA

Abstract

Abstract Mechanisms of proteostasis in anucleate circulating platelets are unknown and may regulate platelet function. We investigated the hypothesis that plasma–borne growth factors/hormones (GFHs) maintain constitutive translation in circulating platelets to facilitate reactivity. Bio-orthogonal noncanonical amino acid tagging (BONCAT) coupled with liquid chromatography–tandem mass spectrometry analysis revealed constitutive translation of a broad-spectrum translatome in human platelets dependent upon plasma or GFH exposure, and in murine circulation. Freshly isolated platelets from plasma showed homeostatic activation of translation-initiation signaling pathways: phosphorylation of p38/ERK upstream kinases, essential intermediate MNK1/2, and effectors eIF4E/4E-BP1. Plasma starvation led to loss of pathway phosphorylation, but it was fully restored with 5-minute stimulation by plasma or GFHs. Cycloheximide or puromycin infusion suppressed ex vivo platelet GpIIb/IIIa activation and P-selectin exposure with low thrombin concentrations and low-to-saturating concentrations of adenosine 5′-diphosphate (ADP) or thromboxane analog but not convulxin. ADP–induced thromboxane generation was blunted by translation inhibition, and secondary-wave aggregation was inhibited in a thromboxane-dependent manner. Intravenously administered puromycin reduced injury-induced clot size in cremaster muscle arterioles, and delayed primary hemostasis after tail tip amputation but did not delay neither final hemostasis after subsequent rebleeds, nor final hemostasis after jugular vein puncture. In contrast, these mice were protected from injury-induced arterial thrombosis and thrombin-induced pulmonary thromboembolism (PE), and adoptive transfer of translation-inhibited platelets into untreated mice inhibited arterial thrombosis and PE. Thus, constitutive plasma GFH-driven translation regulates platelet G protein–coupled receptor reactivity to balance hemostasis and thrombotic potential.

Publisher

American Society of Hematology

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