Down-regulation of Insulin Receptor Substrate 1 during Hyperglycemia Induces Vascular Smooth Muscle Cell
Gang Xi1, Christine Wai1, Morris F White2
1From the Division of Endocrinology, Department of Medicine, University of North Carolina School of Medicine, Chapel Hill, North Carolina 27599.
Abstract:
Diabetes is a major risk factor for the development of atherosclerosis, but the mechanism by which hyperglycemia accelerates lesion development is not well defined. Insulin and insulin-like growth factor I (IGF-I) signal through the scaffold protein insulin receptor substrate 1 (IRS-1). In diabetes, IRS-1 is down-regulated, and cells become resistant to insulin. Under these conditions, the IGF-I receptor signals through an alternate scaffold protein, SHPS-1, resulting in pathophysiologic stimulation of vascular smooth muscle cell (VSMC) migration and proliferation. These studies were undertaken to determine whether IRS-1 is functioning constitutively to maintain VSMCs in their differentiated state and, thereby, inhibit aberrant signaling. Here we show that deletion of IRS-1 expression in VSMCs in non-diabetic mice results in dedifferentiation, SHPS-1 activation, and aberrant signaling and that these changes parallel those that occur in response to hyperglycemia. The mice showed enhanced sensitivity to IGF-I stimulation of VSMC proliferation and a hyperproliferative response to vascular injury. KLF4, a transcription factor that induces VSMC dedifferentiation, was up-regulated in IRS-1-/- mice, and the differentiation inducer myocardin was undetectable. Importantly, these changes were replicated in wild-type mice during hyperglycemia. These findings illuminate a new function of IRS-1: that of maintaining cells in their normal, differentiated state. Because IRS-1 is down-regulated in states of insulin resistance that occur in response to metabolic stresses such as obesity and cytokine stimulation, the findings provide a mechanism for understanding how patients with metabolic stress and/or diabetes are predisposed to developing vascular complications.
Insights
Insulin receptor substrate 1 (IRS-1) normally maintains vascular smooth muscle cell differentiation. Loss of IRS-1 or hyperglycemia causes VSMC dedifferentiation, promoting vascular disease development.
Area of Science:
- Vascular Biology
- Metabolic Disease Mechanisms
- Cell Signaling
Background:
- Diabetes accelerates atherosclerosis, but the precise mechanisms remain unclear.
- Hyperglycemia impairs insulin signaling via down-regulation of insulin receptor substrate 1 (IRS-1).
- In insulin resistance, insulin-like growth factor I (IGF-I) signaling shifts to SHPS-1, promoting vascular smooth muscle cell (VSMC) proliferation.
Purpose of the Study:
- To investigate the constitutive role of IRS-1 in maintaining VSMC differentiation.
- To determine if IRS-1 loss in non-diabetic conditions mimics hyperglycemia-induced VSMC changes.
- To elucidate the mechanism linking IRS-1 dysfunction to diabetic vascular complications.
Main Methods:
- Generated IRS-1 knockout (IRS-1-/-) VSMCs in non-diabetic mice.
- Analyzed VSMC differentiation markers (e.g., myocardin) and dedifferentiation factors (e.g., KLF4).
- Assessed VSMC proliferation responses to IGF-I and vascular injury.
- Compared IRS-1-/- mice findings with wild-type mice under hyperglycemic conditions.
Main Results:
- IRS-1 deletion in VSMCs led to dedifferentiation, SHPS-1 activation, and aberrant signaling, mirroring hyperglycemia effects.
- IRS-1-/- mice exhibited increased VSMC proliferation sensitivity to IGF-I and vascular injury.
- KLF4 was upregulated, and myocardin was undetectable in IRS-1-/- VSMCs, with these changes replicated in hyperglycemic wild-type mice.
Conclusions:
- IRS-1 plays a critical role in maintaining VSMC differentiation.
- Loss of IRS-1 function, as seen in insulin resistance and hyperglycemia, drives VSMC dedifferentiation and aberrant signaling.
- This provides a mechanistic link between metabolic stress, insulin resistance, and the predisposition to diabetic vascular complications.
More Related Videos
08:03Glucose Uptake Measurement and Response to Insulin Stimulation in In Vitro Cultured Human Primary Myotubes
Published on: June 25, 2017
08:28Isolation of Primary Patient-specific Aortic Smooth Muscle Cells and Semiquantitative Real-time Contraction Measurements In Vitro
Published on: February 15, 2022
Related Concept Videos
Insulin: The Receptor and Signaling Pathways
Insulin Secretory Vesicles
Hormones Regulating Blood Glucose
In addition to accelerating glucose uptake and utilization, insulin has...
Glucose Homeostasis: Pancreatic Islets and Insulin Secretion
Insulin and C-peptide are...
Regulation of Angiogenesis and Blood Supply
Diabetes Mellitus: Overview and Type I Subtype
Type 1 diabetes is an autoimmune disease in which the immune system mistakenly attacks and destroys the insulin-producing beta cells in the pancreas. As a result, the body is unable to produce sufficient insulin, and individuals with...
