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Published on: October 30, 2009
Functional Validation of microRNA-126-3p as a Platelet Reactivity Regulator Using Human Haematopoietic Stem Cells
Alix Garcia1, Sylvie Dunoyer-Geindre1, Veronika Zapilko1
1Geneva Platelet Group, Faculty of Medicine, University of Geneva, Geneva, Switzerland.
Background:
Platelets are an abundant source of micro-ribonucleic acids (miRNAs) that may play a role in the regulation of platelet function. Some miRNAs, such as miR-126-3p, have been noted as potential biomarkers of platelet reactivity and the recurrence of cardiovascular events. However, the biological relevance of these associations remains uncertain, and the functional validation of candidate miRNAs on human-derived cells is lacking.
Objective:
This article functionally validates miR-126-3p as a regulator of platelet reactivity in platelet-like structures (PLS) derived from human haematopoietic stem cells.
Materials And Methods:
CD34+-derived megakaryocytes were transfected with miR-126-3p and differentiated in PLS. PLS reactivity was assessed using perfusion in a fibrinogen-coated flow chamber. miR-126-3p's selected gene targets were validated using quantitative polymerase chain reaction, protein quantification and a reporter gene assay.
Results:
CD34+-derived megakaryocytes transfected with miR-126-3p generated PLS exhibiting 156% more reactivity than the control. These functional data were in line with those obtained analysing CD62P expression. Moreover, miR-126-3p transfection was associated with the down-regulation of a disintegrin and metalloproteinase-9 (ADAM9) messenger RNA (mRNA), a validated target of miR-126-3p, and of Plexin B2 (PLXNB2) mRNA and protein, an actin dynamics regulator. Silencing PLXNB2 led to similar functional results to miR-126-3p transfection. Finally, using a reporter gene assay, we validated PLXNB2 as a direct target of miR-126-3p.
Conclusion:
We functionally validated miR-126-3p as a regulator of platelet reactivity in PLS derived from human haematopoietic stem cells. Moreover, PLXNB2 was validated as a new gene target of miR-126-3p in human cells, suggesting that miR-126-3p mediates its effect on platelets, at least in part, through actin dynamics regulation.
Insights
MicroRNAs (miRNAs) regulate platelet function. This study validates miR-126-3p as a key regulator of platelet reactivity, identifying Plexin B2 (PLXNB2) as a novel target involved in actin dynamics.
Area of Science:
- Hematology
- Molecular Biology
- Cardiovascular Research
Background:
- Platelets contain micro-ribonucleic acids (miRNAs) that may influence platelet function.
- miR-126-3p is a potential biomarker for platelet reactivity and cardiovascular event recurrence, but its functional role is unconfirmed.
- Functional validation of miRNAs in human-derived cells is crucial.
Purpose of the Study:
- To functionally validate miR-126-3p as a regulator of platelet reactivity.
- To investigate the role of miR-126-3p in platelet-like structures (PLS) derived from human hematopoietic stem cells.
- To identify and validate downstream targets of miR-126-3p in human platelets.
Main Methods:
- Differentiated CD34+-derived megakaryocytes into PLS after transfecting with miR-126-3p.
- Assessed PLS reactivity using flow chamber perfusion and CD62P expression.
- Validated miR-126-3p gene targets using quantitative PCR, protein quantification, and reporter gene assays.
Main Results:
- PLS generated from miR-126-3p transfected cells showed 156% increased reactivity compared to controls.
- miR-126-3p transfection led to down-regulation of ADAM9 mRNA and validated PLXNB2 mRNA and protein.
- Silencing PLXNB2 mimicked the functional effects of miR-126-3p transfection.
- PLXNB2 was confirmed as a direct miR-126-3p target via reporter gene assay.
Conclusions:
- miR-126-3p is functionally validated as a regulator of platelet reactivity in human PLS.
- PLXNB2 is identified as a novel direct target of miR-126-3p in human cells.
- miR-126-3p likely regulates platelet function, at least partly, through modulating actin dynamics via PLXNB2.
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