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Imaging Spatial Reorganization of a MAPK Signaling Pathway Using the Tobacco Transient Expression System
Published on: March 20, 2016
The MAP kinase JNK2 mediates cigarette smoke-induced arterial thrombosis
Alexander Breitenstein, Simon F Stämpfli, Martin F Reiner
1Dr. Giovanni G. Camici, PhD, Center for Molecular Cardiology, Wagistrasse 12, 8952 Schlieren, Switzerland, Tel.: +41 44 635 64 68, Fax: +41 44 635 68 27,
Abstract:
Despite public awareness of its deleterious effects, smoking remains a major cause of death. Indeed, it is a risk factor for atherothrombotic complications and in line with this, the introduction of smoking ban in public areas reduced smoking-associated cardiovascular complications. Nonetheless, smoking remains a major concern, and molecular mechanisms by which it causes cardiovascular disease are not known. Peripheral blood monocytes from healthy smokers displayed increased JNK2 and tissue factor (TF) gene expression compared to non-smokers (n=15, p<0.05). Similarly, human aortic endothelial cells exposed to cigarette smoke total particulate matter (CS-TPM) revealed increased TF expression mediated by JNK2 (n=4; p<0.05). Wild-type and JNK2-/- mice were exposed to cigarette smoke for two weeks after which arterial thrombosis was investigated. Wild-type mice exposed to smoke displayed reduced time to thrombotic arterial occlusion (n=8; p<0.05) and increased tissue factor activity (n=7; p<0.05) as compared to wild-type controls (n=6), while JNK2-/-mice exposed to smoke maintained an unaltered thrombotic potential (n=8; p=NS) and tissue factor activity (n=8) comparable to that of JNK2-/- and wild-type controls (n=6; p=NS). Smoking caused an increased production of reactive oxygen species (ROS) in wild-type but not in JNK2-/- mice (n=7; p<0.05 for wild-type mice and n=5-6; p=NS for JNK2-/- mice). In conclusion, the MAP kinase JNK2 mediates cigarette smoke-induced TF activation, arterial thrombosis and ROS production. These results underscore a major role of JNK2 in smoke-mediated thrombus formation and may offer an attractive target to prevent smoke-related thrombosis in those subjects which do not manage quitting.
Insights
Smoking significantly increases cardiovascular risks by activating tissue factor (TF) through JNK2, leading to arterial thrombosis and reactive oxygen species (ROS) production. Targeting JNK2 may prevent smoking-related clotting.
Area of Science:
- Molecular Biology
- Cardiovascular Research
- Toxicology
Background:
- Smoking is a major cause of death and atherothrombotic complications.
- The precise molecular mechanisms linking smoking to cardiovascular disease remain largely unknown.
- Previous studies suggest a link between smoking bans and reduced cardiovascular events.
Purpose of the Study:
- To elucidate the molecular mechanisms by which smoking induces cardiovascular complications.
- To investigate the role of JNK2 in smoking-associated arterial thrombosis and tissue factor activation.
- To explore potential therapeutic targets for preventing smoke-related thrombosis.
Main Methods:
- Gene expression analysis of JNK2 and tissue factor (TF) in monocytes from smokers and non-smokers.
- In vitro studies exposing human aortic endothelial cells to cigarette smoke total particulate matter (CS-TPM).
- In vivo studies using wild-type and JNK2 knockout mice exposed to cigarette smoke, assessing arterial thrombosis, TF activity, and reactive oxygen species (ROS) production.
Main Results:
- Smokers exhibited increased JNK2 and TF gene expression in monocytes compared to non-smokers.
- CS-TPM exposure increased TF expression in endothelial cells, mediated by JNK2.
- Cigarette smoke exposure reduced time to arterial occlusion and increased TF activity in wild-type mice, but not in JNK2 knockout mice.
- Smoking increased ROS production in wild-type mice, an effect absent in JNK2 knockout mice.
Conclusions:
- The mitogen-activated protein kinase JNK2 mediates cigarette smoke-induced TF activation, arterial thrombosis, and ROS production.
- JNK2 plays a critical role in smoke-mediated thrombus formation.
- JNK2 represents a potential therapeutic target for preventing thrombosis in smokers.
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