MAPK-interacting kinase 1 regulates platelet production, activation, and thrombosis

Author:

Manne Bhanu Kanth1,Campbell Robert A.123,Bhatlekar Seema1,Ajanel Abigail13ORCID,Denorme Frederik1ORCID,Portier Irina1,Middleton Elizabeth A.12,Tolley Neal D.1,Kosaka Yasuhiro1,Montenont Emilie1ORCID,Guo Li1ORCID,Rowley Jesse W.12,Bray Paul F.12ORCID,Jacob Shancy1,Fukanaga Rikiro4ORCID,Proud Christopher56,Weyrich Andrew S.12,Rondina Matthew T.1237

Affiliation:

1. 1University of Utah Molecular Medicine Program, Salt Lake City, UT

2. 2Department of Internal Medicine, University of Utah Health, Salt Lake City, UT

3. 3Department of Pathology, University of Utah Health, Salt Lake City, UT

4. 4Department of Biochemistry, Osaka University of Pharmaceutical Sciences, Osaka, Japan

5. 5Lifelong Health, South Australian Health & Medical Research Institute, Adelaide, Australia

6. 6Department of Biological Sciences, University of Adelaide, Adelaide, Australia

7. 7Department of Internal Medicine and the Geriatric Research, Education, and Clinical Center (GRECC), George E. Wahlen Veterans Affairs Medical Center (VAMC), Salt Lake City, UT

Abstract

Abstract The MAPK-interacting kinase (Mnk) family includes Mnk1 and Mnk2, which are phosphorylated and activated in response to extracellular stimuli. Mnk1 contributes to cellular responses by regulating messenger RNA (mRNA) translation, and mRNA translation influences platelet production and function. However, the role of Mnk1 in megakaryocytes and platelets has not previously been studied. The present study investigated Mnk1 in megakaryocytes and platelets using both pharmacological and genetic approaches. We demonstrate that Mnk1, but not Mnk2, is expressed and active in human and murine megakaryocytes and platelets. Stimulating human and murine megakaryocytes and platelets induced Mnk1 activation and phosphorylation of eIF4E, a downstream target of activated Mnk1 that triggers mRNA translation. Mnk1 inhibition or deletion significantly diminished protein synthesis in megakaryocytes as measured by polysome profiling and [35S]-methionine incorporation assays. Depletion of Mnk1 also reduced megakaryocyte ploidy and proplatelet forming megakaryocytes in vitro and resulted in thrombocytopenia. However, Mnk1 deletion did not affect the half-life of circulating platelets. Platelets from Mnk1 knockout mice exhibited reduced platelet aggregation, α granule secretion, and integrin αIIbβ3 activation. Ribosomal footprint sequencing indicated that Mnk1 regulates the translation of Pla2g4a mRNA (which encodes cPLA2) in megakaryocytes. Consistent with this, Mnk1 ablation reduced cPLA2 activity and thromboxane generation in platelets and megakaryocytes. In vivo, Mnk1 ablation protected against platelet-dependent thromboembolism. These results provide previously unrecognized evidence that Mnk1 regulates mRNA translation and cellular activation in platelets and megakaryocytes, endomitosis and thrombopoiesis, and thrombosis.

Publisher

American Society of Hematology

Subject

Cell Biology,Hematology,Immunology,Biochemistry

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