Javascript must be enabled to continue!
Defects of the insulin receptor substrate (IRS) system in human metabolic disorders
View through CrossRef
Insulin receptor substrate (IRS) molecules are key mediators in insulin signaling and play a central role in maintaining basic cellular functions such as growth, survival, and metabolism. They act as docking proteins between the insulin receptor and a complex network of intracellular signaling molecules containing Src homology 2 (SH2) domains. Four members (IRS‐1, IRS‐2, IRS‐3, IRS‐4) of this family have been identified that differ as to tissue distribution, subcellu‐lar localization, developmental expression, binding to the insulin receptor, and interaction with SH2 domain‐containing proteins. Results from targeted disruption of the IRS genes in mice have provided important clues to the functional differences among these related molecules, suggesting they play different and specific roles in vivo. The available data are consistent with the notion that IRS‐1 and IRS‐2 are not functionally interchangeable in tissues that are responsible for glucose production (liver), glucose uptake (skeletal muscle and adipose tissue), and insulin production (pancreatic β cells). In fact, IRS‐1 appears to have its major role in skeletal muscle whereas IRS‐2 appears to regulate he‐patic insulin action as well as pancreatic β cell development and survival. By contrast, IRS‐3 and IRS‐4 genes appear to play a redundant role in the IRS signaling system. Defects in muscle IRS‐1 expression and function have been reported in insulin‐resistant states such as obesity and type 2 diabetes. Several polymorphisms in the IRS genes have been identified, but only the Gly→Arg
972
substitution of IRS‐1, interacting with environmental factors, seems to have a patho‐genic role in the development of type 2 diabetes. In contrast, polymorphisms of the other IRS genes do not appear to contribute to type 2 diabetes.—Sesti, G., Federici, M., Hribal, M. L., Lauro, D., Sbraccia, P., Lauro, R. Defects of the insulin receptor substrate (IRS) system in human metabolic disorders.
FASEB J.
15, 2099–2111 (2001)
Title: Defects of the insulin receptor substrate (IRS) system in human metabolic disorders
Description:
Insulin receptor substrate (IRS) molecules are key mediators in insulin signaling and play a central role in maintaining basic cellular functions such as growth, survival, and metabolism.
They act as docking proteins between the insulin receptor and a complex network of intracellular signaling molecules containing Src homology 2 (SH2) domains.
Four members (IRS‐1, IRS‐2, IRS‐3, IRS‐4) of this family have been identified that differ as to tissue distribution, subcellu‐lar localization, developmental expression, binding to the insulin receptor, and interaction with SH2 domain‐containing proteins.
Results from targeted disruption of the IRS genes in mice have provided important clues to the functional differences among these related molecules, suggesting they play different and specific roles in vivo.
The available data are consistent with the notion that IRS‐1 and IRS‐2 are not functionally interchangeable in tissues that are responsible for glucose production (liver), glucose uptake (skeletal muscle and adipose tissue), and insulin production (pancreatic β cells).
In fact, IRS‐1 appears to have its major role in skeletal muscle whereas IRS‐2 appears to regulate he‐patic insulin action as well as pancreatic β cell development and survival.
By contrast, IRS‐3 and IRS‐4 genes appear to play a redundant role in the IRS signaling system.
Defects in muscle IRS‐1 expression and function have been reported in insulin‐resistant states such as obesity and type 2 diabetes.
Several polymorphisms in the IRS genes have been identified, but only the Gly→Arg
972
substitution of IRS‐1, interacting with environmental factors, seems to have a patho‐genic role in the development of type 2 diabetes.
In contrast, polymorphisms of the other IRS genes do not appear to contribute to type 2 diabetes.
—Sesti, G.
, Federici, M.
, Hribal, M.
L.
, Lauro, D.
, Sbraccia, P.
, Lauro, R.
Defects of the insulin receptor substrate (IRS) system in human metabolic disorders.
FASEB J.
15, 2099–2111 (2001).
Related Results
Abstract 5056: Signaling pathways critical for insulin receptor substrate (IRS)-mediated disruption of MCF-10A acini formation
Abstract 5056: Signaling pathways critical for insulin receptor substrate (IRS)-mediated disruption of MCF-10A acini formation
Abstract
Insulin receptor substrate (IRS)-1 and IRS-2 are important adaptor proteins in insulin-like growth factor-I receptor (IGF-IR) signaling. IRS-1 and IRS-2 are...
(Invited) A Protein-Based Artificial Receptor for Insulin Sensing
(Invited) A Protein-Based Artificial Receptor for Insulin Sensing
Insulin is one of the most important hormones that controls the glucose level in blood. Therefore, the investigation of insulin is very important for the diabetic research. There h...
Mutations in Insulin-Receptor Gene in Insulin-Resistant Patients
Mutations in Insulin-Receptor Gene in Insulin-Resistant Patients
Defects in insulin-receptor function have been associated with insulin-resistant states such as obesity and non-insulin-dependent diabetes mellitus (NIDDM). Several types of mutati...
Frequency of Common Chromosomal Abnormalities in Patients with Idiopathic Acquired Aplastic Anemia
Frequency of Common Chromosomal Abnormalities in Patients with Idiopathic Acquired Aplastic Anemia
Objective: To determine the frequency of common chromosomal aberrations in local population idiopathic determine the frequency of common chromosomal aberrations in local population...
Phosphatidylinositol 3′-kinase associates with an insulin receptor substrate-1 serine kinase distinct from its intrinsic serine kinase
Phosphatidylinositol 3′-kinase associates with an insulin receptor substrate-1 serine kinase distinct from its intrinsic serine kinase
Serine phosphorylation of insulin receptor substrate-1 (IRS-1) has been proposed as a counter-regulatory mechanism in insulin and cytokine signalling. Here we report that IRS-1 is ...
Maximizing Intelligent Reflecting Surface (IRS) Positioning in 5G Wireless Communication and Beyond Using Genetic Algorithms for Enhanced Spectral Efficiency
Maximizing Intelligent Reflecting Surface (IRS) Positioning in 5G Wireless Communication and Beyond Using Genetic Algorithms for Enhanced Spectral Efficiency
Abstract
IRS technology, which consists of passive elements that reflect signals
with controlled phase shifts, offers a promising solution for improving signal quality
and ...
Induction of Insulin Resistance by Adipokines in Human Megakaryocytes
Induction of Insulin Resistance by Adipokines in Human Megakaryocytes
Abstract
Diabetes mellitus (DM) patients have a 2–8 fold increased risk for cardiovascular disease (CVD) and suffer from microvascular (nephropathy, retinopathy) and...
New and simple Ohmic definition of insulin resistance in lean and obese subjects
New and simple Ohmic definition of insulin resistance in lean and obese subjects
objective:: Insulin enhances the influx of glucose into cells. However, the relationship between glucose and insulin is complex and insulin sensitivity varies widely with age, ethn...

