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Perturbing Endothelial Biomechanics via Connexin 43 Structural Disruption
Published on: October 4, 2019
Endothelial-specific deletion of connexin40 promotes atherosclerosis by increasing CD73-dependent leukocyte adhesion
C E Chadjichristos1, K E L Scheckenbach, T A B van Veen
1Division of Cardiology, Geneva University Hospitals and University of Geneva, Geneva, Switzerland.
Insights
Connexin40 (Cx40) gap junctions maintain a non-inflammatory endothelium. Reduced Cx40 accelerates atherosclerosis by increasing leukocyte adhesion, highlighting Cx40
Area of Science:
- Cardiovascular Biology
- Endothelial Cell Biology
- Atherosclerosis Research
Background:
- Endothelial dysfunction initiates atherosclerosis.
- Connexin40 (Cx40) expression decreases during atherogenesis.
- The role of Cx40 in atherosclerosis development requires investigation.
Purpose of the Study:
- To determine if Cx40 contributes to atherosclerosis.
- To investigate the mechanism by which Cx40 influences endothelial function.
Main Methods:
- Generated endothelial-specific Cx40 deletion mice (Cx40del).
- Administered high-cholesterol diets to induce atherosclerosis.
- Assessed atherosclerotic lesion progression and inflammatory markers.
- Utilized in vitro methods (siRNA, antisense) to reduce Cx40 expression.
Main Results:
- Endothelial-specific Cx40 deletion accelerated atherosclerosis progression.
- Cx40del mice exhibited increased monocyte infiltration and VCAM-1 expression.
- Reduced Cx40 decreased endothelial CD73 expression and activity, promoting leukocyte adhesion.
Conclusions:
- Cx40-mediated gap junctional communication promotes an anti-inflammatory endothelium.
- Cx40 propagates adenosine-mediated anti-inflammatory signals.
- Targeting Cx40 enhances leukocyte adhesion and accelerates atherosclerosis.
Background:
Endothelial dysfunction is the initiating event of atherosclerosis. The expression of connexin40 (Cx40), an endothelial gap junction protein, is decreased during atherogenesis. In the present report, we sought to determine whether Cx40 contributes to the development of the disease.
Methods And Results:
Mice with ubiquitous deletion of Cx40 are hypertensive, a risk factor for atherosclerosis. Consequently, we generated atherosclerosis-susceptible mice with endothelial-specific deletion of Cx40 (Cx40del mice). Cx40del mice were indeed not hypertensive. The progression of atherosclerosis was increased in Cx40del mice after 5 and 10 weeks of a high-cholesterol diet, and spontaneous lesions were observed in the aortic sinuses of young mice without such a diet. These lesions showed monocyte infiltration into the intima, increased expression of vascular cell adhesion molecule-1, and decreased expression of the ecto-enzyme CD73 in the endothelium. The proinflammatory phenotype of Cx40del mice was confirmed in another model of induced leukocyte recruitment from the lung microcirculation. Endothelial CD73 is known to induce antiadhesion signaling via the production of adenosine. We found that reducing Cx40 expression in vitro with small interfering RNA or antisense decreased CD73 expression and activity and increased leukocyte adhesion to mouse endothelial cells. These effects were reversed by an adenosine receptor agonist.
Conclusions:
Cx40-mediated gap junctional communication contributes to a quiescent nonactivated endothelium by propagating adenosine-evoked antiinflammatory signals between endothelial cells. Alteration in this mechanism by targeting Cx40 promotes leukocyte adhesion to the endothelium, thus accelerating atherosclerosis.
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