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Updated: Feb 13, 2026

Measuring Calpain Activity in Fixed and Living Cells by Flow Cytometry
Published on: July 8, 2010
Mechanistic Role of the Calcium-Dependent Protease Calpain in the Endothelial Dysfunction Induced by MPO
Zienab Etwebi1, Gavin Landesberg1, Kyle Preston1
1From the Department of Physiology and the Cardiovascular Research Center, Temple University, Philadelphia, PA.
Abstract:
MPO (myeloperoxidase) is a peroxidase enzyme secreted by activated leukocytes that plays a pathogenic role in cardiovascular disease, mainly by initiating endothelial dysfunction. The molecular mechanisms of the endothelial damaging action of MPO remain though largely elusive. Calpain is a calcium-dependent protease expressed in the vascular wall. Activation of calpains has been implicated in inflammatory disorders of the vasculature. Using endothelial cells and genetically modified mice, this study identifies the µ-calpain isoform as novel downstream signaling target of MPO in endothelial dysfunction. Mouse lung microvascular endothelial cells were stimulated with 10 nmol/L MPO for 180 minutes. MPO denitrosylated µ-calpain C-terminus domain, and time dependently activated µ-calpain, but not the m-calpain isoform. MPO also reduced Thr172 AMPK (AMP-activated protein kinase) and Ser1177 eNOS (endothelial nitric oxide synthase) phosphorylation via upregulation of PP2A (protein phosphatase 2) expression. At the functional level, MPO increased endothelial VCAM-1 (vascular cell adhesion molecule 1) abundance and the adhesion of leukocytes to the mouse aorta. In MPO-treated endothelial cells, pharmacological inhibition of calpain activity attenuated expression of VCAM-1 and PP2A, and restored Thr172 AMPK and Ser1177 eNOS phosphorylation. Compared with wild-type mice, µ-calpain deficient mice experienced reduced leukocyte adhesion to the aortic endothelium in response to MPO. Our data first establish a role for calpain in the endothelial dysfunction and vascular inflammation of MPO. The MPO/calpain/PP2A signaling pathway may provide novel pharmacological targets for the treatment of inflammatory vascular disorders.
Insights
Myeloperoxidase (MPO) activates µ-calpain, a protease involved in endothelial dysfunction and vascular inflammation. This pathway, involving PP2A, offers new therapeutic targets for inflammatory vascular disorders.
Area of Science:
- Cardiovascular Biology
- Molecular Medicine
- Endothelial Cell Biology
Background:
- Myeloperoxidase (MPO) is implicated in cardiovascular disease pathogenesis, primarily through endothelial dysfunction.
- The precise molecular mechanisms of MPO-induced endothelial damage are not fully understood.
- Calpains, calcium-dependent proteases in the vascular wall, are linked to vascular inflammatory conditions.
Purpose of the Study:
- To investigate the role of calpain as a downstream signaling target of MPO in endothelial dysfunction.
- To elucidate the molecular mechanisms by which MPO affects endothelial cells and vascular inflammation.
Main Methods:
- Stimulation of mouse lung microvascular endothelial cells with MPO.
- Analysis of µ-calpain and m-calpain activation.
- Assessment of AMPK and eNOS phosphorylation.
- Evaluation of PP2A expression and VCAM-1 abundance.
- Studies using µ-calpain deficient mice and pharmacological calpain inhibition.
Main Results:
- MPO activated the µ-calpain isoform, but not m-calpain, in endothelial cells.
- MPO reduced Thr172 AMPK and Ser1177 eNOS phosphorylation by upregulating PP2A.
- MPO increased VCAM-1 expression and leukocyte adhesion.
- Calpain inhibition or deficiency attenuated MPO-induced VCAM-1 expression, PP2A upregulation, and leukocyte adhesion, while restoring AMPK and eNOS phosphorylation.
Conclusions:
- This study identifies µ-calpain as a novel downstream target of MPO in endothelial dysfunction.
- The MPO/µ-calpain/PP2A signaling pathway contributes to MPO-mediated vascular inflammation.
- This pathway represents a potential therapeutic target for inflammatory vascular diseases.
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