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Updated: Feb 4, 2026

High-throughput Measurement of Dictyostelium discoideum Macropinocytosis by Flow Cytometry
Published on: September 10, 2018
PKCδ stimulates macropinocytosis via activation of SSH1-cofilin pathway
Bhupesh Singla1, Hui-Ping Lin1, Pushpankur Ghoshal1
1Vascular Biology Center, 1460 Laney Walker Blvd., Augusta University, Medical College of Georgia, Augusta, GA 30912, USA.
Abstract:
Macropinocytosis is an actin-dependent endocytic mechanism mediating internalization of extracellular fluid and associated solutes into cells. The present study was designed to identify the specific protein kinase C (PKC) isoform(s) and downstream effectors regulating actin dynamics during macropinocytosis. We utilized various cellular and molecular biology techniques, pharmacological inhibitors and genetically modified mice to study the signaling mechanisms mediating macropinocytosis in macrophages. The qRT-PCR experiments identified PKCδ as the predominant PKC isoform in macrophages. Scanning electron microscopy and flow cytometry analysis of FITC-dextran internalization demonstrated the functional role of PKCδ in phorbol ester- and hepatocyte growth factor (HGF)-induced macropinocytosis. Western blot analysis demonstrated that phorbol ester and HGF stimulate activation of slingshot phosphatase homolog 1 (SSH1) and induce cofilin Ser-3 dephosphorylation via PKCδ in macrophages. Silencing of SSH1 inhibited cofilin dephosphorylation and macropinocytosis stimulation. Interestingly, we also found that incubation of macrophages with BMS-5, a potent inhibitor of LIM kinase, does not stimulate macropinocytosis. In conclusion, the findings of the present study demonstrate a previously unidentified mechanism by which PKCδ via activation of SSH1 and cofilin dephosphorylation stimulates membrane ruffle formation and macropinocytosis. The results of the present study may contribute to a better understanding of the regulatory mechanisms during macrophage macropinocytosis.
Insights
Protein kinase C delta (PKCδ) activates SSH1 phosphatase, dephosphorylating cofilin to drive macropinocytosis in macrophages. This study reveals a novel pathway regulating fluid uptake and actin dynamics.
Area of Science:
- Cell Biology
- Molecular Biology
- Immunology
Background:
- Macropinocytosis is a critical cellular process for fluid and solute uptake.
- Actin dynamics are central to macropinocytosis, but the specific regulatory pathways remain incompletely understood.
Purpose of the Study:
- To identify the protein kinase C (PKC) isoform regulating actin dynamics in macropinocytosis.
- To elucidate the downstream effectors involved in PKC-mediated macropinocytosis.
Main Methods:
- Quantitative reverse transcription PCR (qRT-PCR) for PKC isoform identification.
- Scanning electron microscopy and flow cytometry for assessing macropinocytosis.
- Western blot analysis for protein activation and phosphorylation states.
- Gene silencing techniques (SSH1) and pharmacological inhibitors (BMS-5).
Main Results:
- PKCδ was identified as the predominant PKC isoform in macrophages.
- PKCδ mediates phorbol ester- and HGF-induced macropinocytosis.
- PKCδ activation leads to SSH1 activation and cofilin dephosphorylation, crucial for macropinocytosis.
- SSH1 silencing abrogated cofilin dephosphorylation and macropinocytosis.
Conclusions:
- A novel PKCδ-SSH1-cofilin signaling axis regulates membrane ruffling and macropinocytosis in macrophages.
- This pathway is critical for cellular fluid uptake and may offer therapeutic targets.
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