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Measuring Proliferation of Vascular Smooth Muscle Cells Using Click Chemistry
Published on: October 30, 2019
Hyperglycemia induces vascular smooth muscle cell dedifferentiation by suppressing insulin receptor
Gang Xi1, Xinchun Shen2, Christine Wai1
1From the Division of Endocrinology, Department of Medicine, University of North Carolina School of Medicine, Chapel Hill, North Carolina 27599.
Abstract:
Hyperglycemia and insulin resistance accelerate atherosclerosis by an unclear mechanism. The two factors down-regulate insulin receptor substrate-1 (IRS-1), an intermediary of the insulin/IGF-I signaling system. We previously reported that IRS-1 down-regulation leads to vascular smooth muscle cell (VSMC) dedifferentiation and that IRS-1 deletion from VSMCs in normoglycemic mice replicates this response. However, we did not determine IRS-1's role in mediating differentiation. Here, we sought to define the mechanism by which IRS-1 maintains VSMC differentiation. High glucose or IRS-1 knockdown decreased p53 levels by enhancing MDM2 proto-oncogene (MDM2)-mediated ubiquitination, resulting in decreased binding of p53 to Krüppel-like factor 4 (KLF4). Exposure to nutlin-3, which dissociates MDM2/p53, decreased p53 ubiquitination and enhanced the p53/KLF4 association and differentiation marker protein expression. IRS-1 overexpression in high glucose inhibited the MDM2/p53 association, leading to increased p53 and p53/KLF4 levels, thereby increasing differentiation. Nutlin-3 treatment of diabetic or Irs1-/- mice enhanced p53/KLF4 and the expression of p21, smooth muscle protein 22 (SM22), and myocardin and inhibited aortic VSMC proliferation. Injecting normoglycemic mice with a peptide disrupting the IRS-1/p53 association reduced p53, p53/KLF4, and differentiation. Analyzing atherosclerotic lesions in hypercholesterolemic, diabetic pigs, we found that p53, IRS-1, SM22, myocardin, and KLF4/p53 levels are significantly decreased compared with their expression in nondiabetic pigs. We conclude that IRS-1 is critical for maintaining VSMC differentiation. Hyperglycemia- or insulin resistance-induced IRS-1 down-regulation decreases the p53/KLF4 association and enhances dedifferentiation and proliferation. Our results suggest that enhancing IRS-1-dependent p53 stabilization could attenuate the progression of atherosclerotic lesions in hyperglycemia and insulin-resistance states.
Insights
Insulin receptor substrate-1 (IRS-1) is crucial for maintaining vascular smooth muscle cell (VSMC) differentiation. Down-regulation of IRS-1 in hyperglycemia and insulin resistance impairs VSMC differentiation by affecting the p53/KLF4 association, promoting atherosclerosis.
Area of Science:
- Molecular Biology
- Cardiovascular Research
- Cellular Signaling
Background:
- Hyperglycemia and insulin resistance accelerate atherosclerosis via mechanisms not fully understood.
- These conditions down-regulate insulin receptor substrate-1 (IRS-1), a key mediator in insulin/IGF-I signaling.
- Previous work linked IRS-1 down-regulation to vascular smooth muscle cell (VSMC) dedifferentiation.
Purpose of the Study:
- To elucidate the precise mechanism by which IRS-1 maintains VSMC differentiation.
- To investigate the role of the p53/KLF4 pathway in IRS-1-mediated VSMC differentiation.
- To explore therapeutic strategies targeting IRS-1 for atherosclerosis in metabolic diseases.
Main Methods:
- Utilized cell culture models with high glucose and IRS-1 knockdown.
- Employed nutlin-3 to modulate p53-MDM2 interactions and assessed protein associations.
- Administered treatments to diabetic and genetically modified mice (Irs1-/-) and analyzed atherosclerotic lesions in diabetic pigs.
Main Results:
- High glucose or IRS-1 knockdown decreased p53 levels via MDM2-mediated ubiquitination, weakening the p53/KLF4 association and promoting VSMC dedifferentiation.
- Nutlin-3 treatment or IRS-1 overexpression restored p53/KLF4 association and VSMC differentiation markers, while inhibiting proliferation in vivo.
- Diabetic pigs with atherosclerosis showed significantly reduced levels of p53, IRS-1, SM22, and myocardin compared to non-diabetic pigs.
Conclusions:
- IRS-1 is essential for maintaining VSMC differentiation, acting through the p53/KLF4 pathway.
- Hyperglycemia-induced IRS-1 down-regulation disrupts this pathway, leading to VSMC dedifferentiation and proliferation, contributing to atherosclerosis.
- Targeting IRS-1-dependent p53 stabilization presents a potential therapeutic avenue to mitigate atherosclerotic lesion progression in diabetes and insulin resistance.
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