4.8 Article

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

Journal

ELIFE
Volume 11, Issue -, Pages -

Publisher

eLIFE SCIENCES PUBL LTD
DOI: 10.7554/eLife.79590

Keywords

DLL-4; DAPT; gamma-secretase; thrombin; pi3k; thrombosis; Human; Mouse

Categories

Funding

  1. JC Bose National Fellowship [JCB/2017/000029]
  2. Indian Council of Medical Research [71/4/2018-BMS/CAR]
  3. Department of Biotechnology [BT/PR-20645/BRB/10/1541/2016]
  4. Science and Engineering Research Board [EMR/2015/000583]
  5. Indian Council of Medical Research
  6. Council of Scientific and Industrial Research, India
  7. Humboldt Foundation
  8. University Grants Commission India

Ask authors/readers for more resources

The study demonstrates the expression of Notch1, its ligand DLL-4, and their respective transcripts in human platelets. Thrombin upregulates synthesis and surface translocation of Notch1 and DLL-4. DLL-4 cleaves Notch receptor to instigate neighboring platelets to switch to an 'activated' phenotype.
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 gamma-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.

Authors

I am an author on this paper
Click your name to claim this paper and add it to your profile.

Reviews

Primary Rating

4.8
Not enough ratings

Secondary Ratings

Novelty
-
Significance
-
Scientific rigor
-
Rate this paper

Recommended

No Data Available
No Data Available