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Updated: Mar 29, 2026

Isolation and Characterization of Neutrophil-derived Microparticles for Functional Studies
Published on: March 2, 2018
Impact of microRNA-130a on the neutrophil proteome
Corinna Cavan Pedersen1, Jan Christian Refsgaard2, Ole Østergaard3
1The Granulocyte Research Laboratory, Department of Hematology, National University Hospital, University of Copenhagen, 9322, Blegdamsvej 9, DK-2100, Copenhagen Ø, Denmark. corinna.cavan.pedersen@regionh.dk.
Background:
MicroRNAs (miRNAs) are important for the development and function of neutrophils. miR-130a is highly expressed during early neutrophil development and regulates target proteins important for this process. miRNA targets are often identified by validating putative targets found by in silico prediction algorithms one at a time. However, one miRNA can have many different targets, which may vary depending on the context. Here, we investigated the effect of miR-130a on the proteome of a murine and a human myeloid cell line.
Results:
Using pulsed stable isotope labelling of amino acids in cell culture and mass spectrometry for protein identification and quantitation, we found 44 and 34 proteins that were significantly regulated following inhibition of miR-130a in a miR-130a-overexpressing 32Dcl3 clone and Kasumi-1 cells, respectively. The level of miR-130a inhibition correlated with the impact on protein levels. We used RAIN, a novel database for miRNA-protein and protein-protein interactions, to identify putative miR-130a targets. In the 32Dcl3 clone, putative targets were more up-regulated than the remaining quantified proteins following miR-130a inhibition, and three significantly derepressed proteins (NFYC, ISOC1, and CAT) are putative miR-130a targets with good RAIN scores. We also created a network including inferred, putative neutrophil miR-130a targets and identified the transcription factors Myb and CBF-β as putative miR-130a targets, which may regulate the primary granule proteins MPO and PRTN3 and other proteins differentially expressed following miR-130a inhibition in the 32Dcl3 clone.
Conclusion:
We have experimentally identified miR-130a-regulated proteins within the neutrophil proteome. Linking these to putative miR-130a targets, we provide an association network of potential direct and indirect miR-130a targets that expands our knowledge on the role of miR-130a in neutrophil development and is a valuable platform for further experimental studies.
Insights
MicroRNAs (miRNAs) regulate neutrophil development. This study identified proteins affected by miR-130a, revealing its role in neutrophil proteome regulation and providing a network of potential targets.
Area of Science:
- Molecular Biology
- Proteomics
- Cell Biology
Background:
- MicroRNAs (miRNAs) are crucial regulators in neutrophil development and function.
- miR-130a is highly expressed during early neutrophil development, targeting proteins vital for this process.
- Traditional methods for identifying miRNA targets are time-consuming, as one miRNA can affect multiple proteins.
Purpose of the Study:
- To investigate the impact of miR-130a on the proteome of murine and human myeloid cell lines.
- To identify novel protein targets regulated by miR-130a in neutrophils.
- To construct a regulatory network of miR-130a targets in neutrophils.
Main Methods:
- Utilized pulsed stable isotope labeling of amino acids in cell culture (pSILAC) for quantitative proteomics.
- Employed mass spectrometry for protein identification and quantification.
- Integrated the RAIN database for analyzing miRNA-protein and protein-protein interactions.
Main Results:
- Identified 44 and 34 significantly regulated proteins in 32Dcl3 and Kasumi-1 cells, respectively, upon miR-130a inhibition.
- Observed a correlation between the level of miR-130a inhibition and the extent of protein regulation.
- Discovered NFYC, ISOC1, and CAT as direct miR-130a targets and identified Myb and CBF-β as potential regulators of neutrophil proteins.
Conclusions:
- Experimentally identified miR-130a-regulated proteins within the neutrophil proteome.
- Established an association network of direct and indirect miR-130a targets.
- Expanded the understanding of miR-130a's role in neutrophil development, providing a foundation for future research.
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