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Notch signaling functions in noncanonical juxtacrine manner in platelets to amplify thrombogenicity

BACKGROUND: Notch signaling dictates cell fate decisions in mammalian cells including megakaryocytes. Existence of functional Notch signaling in enucleate platelets remains elusive. METHODS: Transcripts/peptides of Notch1 and Delta-like ligand (DLL)–4 were detected in platelets isolated from human b...

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Autores principales: Chaurasia, Susheel N, Ekhlak, Mohammad, Kushwaha, Geeta, Singh, Vipin, Mallick, Ram L, Dash, Debabrata
Formato: Online Artículo Texto
Lenguaje:English
Publicado: eLife Sciences Publications, Ltd 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9629830/
https://www.ncbi.nlm.nih.gov/pubmed/36190110
http://dx.doi.org/10.7554/eLife.79590
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author Chaurasia, Susheel N
Ekhlak, Mohammad
Kushwaha, Geeta
Singh, Vipin
Mallick, Ram L
Dash, Debabrata
author_facet Chaurasia, Susheel N
Ekhlak, Mohammad
Kushwaha, Geeta
Singh, Vipin
Mallick, Ram L
Dash, Debabrata
author_sort Chaurasia, Susheel N
collection PubMed
description BACKGROUND: Notch signaling dictates cell fate decisions in mammalian cells including megakaryocytes. Existence of functional Notch signaling in enucleate platelets remains elusive. METHODS: Transcripts/peptides of Notch1 and Delta-like ligand (DLL)–4 were detected in platelets isolated from human blood by RT-qPCR, Western analysis and flow cytometry. Platelet aggregation, granule secretion and platelet-leukocyte interaction were analyzed by lumi-aggregometry and flow cytometry. Platelet-derived extracellular vesicles were documented with Nanoparticle Tracking Analyzer. Platelet thrombus on immobilized collagen was quantified using microfluidics platform. Intracellular calcium was monitored by fluorescence spectrophotometry. Whole blood coagulation was studied by thromboelastography. Ferric chloride-induced mouse mesenteric arteriolar thrombosis was imaged by intravital microscopy. RESULTS: We demonstrate expression of Notch1, its ligand DLL-4 and their respective transcripts in human platelets. Synthesis and surface translocation of Notch1 and DLL-4 were upregulated by thrombin. DLL-4, in turn, instigated neighbouring platelets to switch to ‘activated’ phenotype through cleavage of Notch receptor and release of its intracellular domain (NICD), which was averted by inhibition of γ-secretase and phosphatidylinositol-3-kinase (PI3K). Inhibition of Notch signaling, too, restrained agonist-induced platelet activation, and significantly impaired arterial thrombosis in mice. Strikingly, prevention of DLL-4-Notch1 interaction by a blocking antibody abolished platelet aggregation and extracellular vesicle shedding induced by thrombin. CONCLUSIONS: Our study presents compelling evidence in support of non-canonical juxtacrine Notch signaling within platelet aggregates that synergizes with physiological agonists to generate occlusive intramural thrombi. Thus, Notch pathway can be a potential anti-platelet/anti-thrombotic therapeutic target. FUNDING: Research was supported by grants received by DD from JC Bose Fellowship (JCB/2017/000029), ICMR (71/4/2018-BMS/CAR), DBT (BT/PR-20645/BRB/10/1541/2016) and SERB (EMR/2015/000583). SNC, ME and VS are recipients of ICMR-Scientist-C, CSIR-SRF and UGC-SRF support, respectively. Funders had no role in design, analysis and reporting of study.
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spelling pubmed-96298302022-11-03 Notch signaling functions in noncanonical juxtacrine manner in platelets to amplify thrombogenicity Chaurasia, Susheel N Ekhlak, Mohammad Kushwaha, Geeta Singh, Vipin Mallick, Ram L Dash, Debabrata eLife Cell Biology BACKGROUND: Notch signaling dictates cell fate decisions in mammalian cells including megakaryocytes. Existence of functional Notch signaling in enucleate platelets remains elusive. METHODS: Transcripts/peptides of Notch1 and Delta-like ligand (DLL)–4 were detected in platelets isolated from human blood by RT-qPCR, Western analysis and flow cytometry. Platelet aggregation, granule secretion and platelet-leukocyte interaction were analyzed by lumi-aggregometry and flow cytometry. Platelet-derived extracellular vesicles were documented with Nanoparticle Tracking Analyzer. Platelet thrombus on immobilized collagen was quantified using microfluidics platform. Intracellular calcium was monitored by fluorescence spectrophotometry. Whole blood coagulation was studied by thromboelastography. Ferric chloride-induced mouse mesenteric arteriolar thrombosis was imaged by intravital microscopy. RESULTS: We demonstrate expression of Notch1, its ligand DLL-4 and their respective transcripts in human platelets. Synthesis and surface translocation of Notch1 and DLL-4 were upregulated by thrombin. DLL-4, in turn, instigated neighbouring platelets to switch to ‘activated’ phenotype through cleavage of Notch receptor and release of its intracellular domain (NICD), which was averted by inhibition of γ-secretase and phosphatidylinositol-3-kinase (PI3K). Inhibition of Notch signaling, too, restrained agonist-induced platelet activation, and significantly impaired arterial thrombosis in mice. Strikingly, prevention of DLL-4-Notch1 interaction by a blocking antibody abolished platelet aggregation and extracellular vesicle shedding induced by thrombin. CONCLUSIONS: Our study presents compelling evidence in support of non-canonical juxtacrine Notch signaling within platelet aggregates that synergizes with physiological agonists to generate occlusive intramural thrombi. Thus, Notch pathway can be a potential anti-platelet/anti-thrombotic therapeutic target. FUNDING: Research was supported by grants received by DD from JC Bose Fellowship (JCB/2017/000029), ICMR (71/4/2018-BMS/CAR), DBT (BT/PR-20645/BRB/10/1541/2016) and SERB (EMR/2015/000583). SNC, ME and VS are recipients of ICMR-Scientist-C, CSIR-SRF and UGC-SRF support, respectively. Funders had no role in design, analysis and reporting of study. eLife Sciences Publications, Ltd 2022-10-03 /pmc/articles/PMC9629830/ /pubmed/36190110 http://dx.doi.org/10.7554/eLife.79590 Text en © 2022, Chaurasia et al https://creativecommons.org/licenses/by/4.0/This article is distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use and redistribution provided that the original author and source are credited.
spellingShingle Cell Biology
Chaurasia, Susheel N
Ekhlak, Mohammad
Kushwaha, Geeta
Singh, Vipin
Mallick, Ram L
Dash, Debabrata
Notch signaling functions in noncanonical juxtacrine manner in platelets to amplify thrombogenicity
title Notch signaling functions in noncanonical juxtacrine manner in platelets to amplify thrombogenicity
title_full Notch signaling functions in noncanonical juxtacrine manner in platelets to amplify thrombogenicity
title_fullStr Notch signaling functions in noncanonical juxtacrine manner in platelets to amplify thrombogenicity
title_full_unstemmed Notch signaling functions in noncanonical juxtacrine manner in platelets to amplify thrombogenicity
title_short Notch signaling functions in noncanonical juxtacrine manner in platelets to amplify thrombogenicity
title_sort notch signaling functions in noncanonical juxtacrine manner in platelets to amplify thrombogenicity
topic Cell Biology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9629830/
https://www.ncbi.nlm.nih.gov/pubmed/36190110
http://dx.doi.org/10.7554/eLife.79590
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