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.

BMC Immunology
|November 27, 2015
PubMed
Abstract

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.