[HTML][HTML] Apoptosis Signal–Regulating Kinase 1 Deficiency Attenuates Vascular Injury–Induced Neointimal Hyperplasia by Suppressing Apoptosis in Smooth Muscle …

T Tasaki, S Yamada, X Guo, A Tanimoto… - The American journal of …, 2013 - Elsevier
T Tasaki, S Yamada, X Guo, A Tanimoto, KY Wang, A Nabeshima, S Kitada, H Noguchi…
The American journal of pathology, 2013Elsevier
Apoptosis signal–regulating kinase 1 (ASK1) is a mitogen-activated protein kinase kinase
kinase that plays a crucial role in stress-induced apoptosis. Recently, we have reported that
suppressed macrophage apoptosis in ASK1 and apolipoprotein E double-knockout mice
accelerates atheromatous plaques in the hyperlipidemia-induced atherosclerotic model.
However, the pathogenic role of smooth muscle cell (SMC) apoptosis in atherosclerosis still
remains unclear. We investigated neointimal remodeling in ligated carotid arteries of ASK1 …
Apoptosis signal–regulating kinase 1 (ASK1) is a mitogen-activated protein kinase kinase kinase that plays a crucial role in stress-induced apoptosis. Recently, we have reported that suppressed macrophage apoptosis in ASK1 and apolipoprotein E double-knockout mice accelerates atheromatous plaques in the hyperlipidemia-induced atherosclerotic model. However, the pathogenic role of smooth muscle cell (SMC) apoptosis in atherosclerosis still remains unclear. We investigated neointimal remodeling in ligated carotid arteries of ASK1-deficient mice (ASK1−/−) for 3 weeks. ASK1−/− mice had significantly more suppressed intimal formation, inversely manifesting as potential anti-atherogenic aspects of ASK1 deficiency, characterized by fewer SMCs and less collagen synthesis; and fewer apoptotic SMCs, infiltrating T lymphocytes, and microvessels, associated with decreased apoptosis of luminal endothelial cells, compared with those of wild-type mice. Injured arteries of ASK1−/− mice also showed significantly down-regulated expression of pro-apoptotic markers, adhesion molecules, and pro-inflammatory signaling factors. Moreover, tumor necrosis factor-α–induced apoptosis was markedly suppressed in cultured aortic SMCs from ASK1−/− mice. These findings suggest that ASK1 accelerates mechanical injury–induced vascular remodeling with activated SMC migration via increased neovascularization and/or enhanced SMC and endothelial cell apoptosis. ASK1 expression, especially in the SMCs, might be crucial, and reciprocally responsible for various pro-atherogenic functions, and SMC apoptosis seems to be detrimental in this model.
Elsevier