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Involvement of mitogen-activated protein kinase (MAPK)-activated protein kinase 2 (MK2) in endothelial dysfunction
Mohammad Shafiq1, Zahid Rasool Lone2, Pragya Bharati1
1Division of Pharmacology, CSIR-Central Drug Research Institute, Lucknow 226031, India; Academy of Scientific and Innovative Research, Ghaziabad, Uttar Pradesh, India.
Aims:
Increased proliferation, inflammation, and endothelial microparticle (EMP) generation in the pulmonary vasculature lead to endothelial dysfunction in pulmonary hypertension (PH). Interestingly, MK2, a downstream of p38MAPK, is a central regulator of inflammation, proliferation, and EMP generation in cardiovascular diseases. However, the role of MK2 in pulmonary endothelial dysfunction remains unexplored.
Main Methods:
The Human Pulmonary Artery Endothelial cells (HPAECs) were exposed to hypoxia (1% O2) for 72 h, and MK2 inhibition was achieved by siRNA treatment. Western blotting, qualitative RT-PCR, immunocytochemistry, flow cytometry and enzyme-linked immunoassays were conducted to study pathological alterations and molecular mechanisms. Neoangiogenesis was studied using cell migration and tubule formation assays. For in vivo study, Male Sprague Dawley rats and MK2 knock-out mice with littermate control were treated with monocrotaline (MCT) 60 mg/kg and 600 mg/kg, respectively (s.c. once in rat and weekly in mice) to induce PH. MMI-0100 (40 μg/kg, i.p. daily for 35 days), was administered in rats to inhibit MK2.
Key Findings:
MK2 inhibition significantly decreased inflammation, cell proliferation, apoptosis resistance, and improved mitochondrial functions in hypoxic HPAECs. Hypoxia promoted cell migration, VEGF expression, and angiogenesis in HPAECs, which were also reversed by MK2 siRNA. MK2 inhibition decreased EMP generation and increased the expression of p-eNOS in hypoxic HPAECs, a marker of endothelial function. Furthermore, MK2 deficiency and inhibition both reduced the EMP generation in mice and rats, respectively.
Significance:
These findings proved that MK2 is involved in endothelial dysfunction, and its inhibition may be beneficial for endothelial function in PH.
Insights
Mitogen-activated protein kinase-activated protein kinase 2 (MK2) inhibition reduced inflammation and improved endothelial function in pulmonary hypertension (PH). MK2 plays a key role in PH-induced endothelial dysfunction.
Area of Science:
- Cardiovascular Research
- Endothelial Biology
- Molecular Medicine
Background:
- Pulmonary hypertension (PH) involves increased proliferation, inflammation, and endothelial microparticle (EMP) generation, leading to endothelial dysfunction.
- Mitogen-activated protein kinase-activated protein kinase 2 (MK2) regulates inflammation, proliferation, and EMP generation in cardiovascular diseases.
- The specific role of MK2 in pulmonary endothelial dysfunction is currently unexplored.
Purpose of the Study:
- To investigate the role of MK2 in pulmonary endothelial dysfunction.
- To determine if MK2 inhibition can ameliorate endothelial dysfunction in PH.
Main Methods:
- Human Pulmonary Artery Endothelial Cells (HPAECs) were exposed to hypoxia and treated with MK2 siRNA.
- Western blotting, RT-PCR, immunocytochemistry, flow cytometry, and ELISAs were used to analyze molecular mechanisms.
- In vivo studies involved monocrotaline-induced PH in rats and MK2 knockout mice, with MK2 inhibition using MMI-0100 in rats.
Main Results:
- MK2 inhibition decreased inflammation, proliferation, and apoptosis resistance in hypoxic HPAECs.
- MK2 inhibition improved mitochondrial function, reduced EMP generation, and increased p-eNOS expression in hypoxic HPAECs.
- MK2 deficiency and inhibition reduced EMP generation in both mice and rats.
Conclusions:
- MK2 is implicated in the development of endothelial dysfunction in PH.
- Inhibiting MK2 demonstrates potential therapeutic benefits for improving endothelial function in PH.
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