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Evaluation of Protein–Protein Interactions using an On-Membrane Digestion Technique
Published on: July 19, 2019
Dysregulation of Calpain Proteolytic Systems Underlies Degenerative Vascular Disorders
Takuro Miyazaki1, Akira Miyazaki1
1Department of Biochemistry, Showa University School of Medicine.
Insights
Dysfunctional calpain systems contribute to vascular diseases like atherosclerosis by impairing endothelial cells and promoting inflammation. Understanding calpain
Area of Science:
- Vascular Biology
- Molecular Medicine
- Biochemistry
Background:
- Chronic vascular diseases involve endothelial dysfunction and cell death.
- Defective calpain protein metabolism is increasingly linked to vascular degeneration.
- Calpains are implicated in various vascular pathologies.
Purpose of the Study:
- To review the role of calpains in degenerative vascular disorders.
- To highlight calpain's contribution to endothelial dysfunction, inflammation, and vascular remodeling.
- To discuss the impact of both conventional and unconventional calpains.
Main Methods:
- Literature review of recent research on calpains and vascular disease.
- Analysis of molecular mechanisms involving calpain overactivation.
- Discussion of calpain's role in different vascular cell types.
Main Results:
- Calpain-1 and -2 overactivation disrupt endothelial cell junctions and signaling.
- Calpain dysregulation promotes inflammation in macrophages and proliferation in smooth muscle cells.
- Non-proteolytic calpain-6 influences macrophage phenotype and lipid deposition.
Conclusions:
- Calpain proteolytic systems are critical players in vascular degeneration.
- Targeting calpains may offer therapeutic strategies for vascular diseases.
- Further research into calpain pathways is essential for understanding and treating vascular disorders.
Abstract:
Chronic vascular diseases such as atherosclerosis, aneurysms, diabetic angiopathy/retinopathy as well as fibrotic and proliferative vascular diseases are generally complicated by the progression of degenerative insults, which are characterized by endothelial dysfunction, apoptotic/necrotic cell death in vascular/immune cells, remodeling of extracellular matrix or breakdown of elastic lamella. Increasing evidence suggests that dysfunctional calpain proteolytic systems and defective calpain protein metabolism in blood vessels contribute to degenerative disorders. In vascular endothelial cells, the overactivation of conventional calpains consisting of calpain-1 and -2 isozymes can lead to the disorganization of cell-cell junctions, dysfunction of nitric oxide synthase, sensitization of Janus kinase/signal transducer and activator of transcription cascades and depletion of prostaglandin I2, which contributes to degenerative disorders. In addition to endothelial cell dysfunctions, calpain overactivation results in inflammatory insults in macrophages and excessive fibrogenic/proliferative signaling in vascular smooth muscle cells. Moreover, calpain-6, a non-proteolytic unconventional calpain, is involved in the conversion of macrophages to a pro-atherogenic phenotype, leading to the pinocytotic deposition of low-density lipoprotein cholesterol in the cells. Here, we discuss the recent progress that has been made in our understanding of how calpain contributes to degenerative vascular disorders.
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