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Published on: January 4, 2018
Insulin receptor cleavage induced by estrogen impairs insulin signaling
Tomoyuki Yuasa1, Yasunori Takata2, Nanako Aki3
1Community Medicine and Medical Science, Tokushima University Graduate School of Biomedical Sciences, Tokushima, Japan yuasa.tomoyuki@tokushima-u.ac.jp.
Introduction:
Soluble insulin receptor (sIR), which is the ectodomain of insulin receptor (IR), is present in human plasma. Plasma sIR levels are positively correlated with blood glucose levels and negatively correlated with insulin sensitivity. An in vitro model of IR cleavage shows that extracellular calpain 2 directly cleaves IR, which generates sIR, and sequential cleavage of the IRβ subunit by γ-secretase impairs insulin signaling in a glucose concentration-dependent manner. Nevertheless, sIR levels vary among subjects with normal glucose levels.
Research Design And Methods:
We examined sIR levels of pregnant women throughout gestation. Using an in vitro model, we also investigated the molecular mechanisms of IR cleavage induced by estradiol.
Results:
In pregnant women, sIR levels were positively correlated with estrogen levels and significantly increased at late pregnancy independent of glucose levels. Using an in vitro model, estrogen elicited IR cleavage and impaired cellular insulin signaling. Estradiol-induced IR cleavage was inhibited by targeting of calpain 2 and γ-secretase. Estrogen exerted these biological effects via G protein-coupled estrogen receptor, and its selective ligand upregulated calpain 2 expression and promoted exosome secretion, which significantly increased extracellular calpain 2. Simultaneous stimulation of estrogen and high glucose levels had a synergic effect on IR cleavage. Metformin prevented calpain 2 release in exosomes and restored insulin signaling impaired by estrogen.
Conclusions:
Estradiol-induced IR cleavage causes cellular insulin resistance, and its molecular mechanisms are shared with those by high glucose levels. sIR levels at late pregnancy are significantly elevated along with estrogen levels. Therefore, estradiol-induced IR cleavage is preserved in pregnant women and could be part of the etiology of insulin resistance in gestational diabetes mellitus and overt diabetes during pregnancy.
Insights
Estradiol increases soluble insulin receptor (sIR) levels, causing insulin resistance, particularly in late pregnancy. This mechanism, shared with high glucose, may contribute to gestational diabetes. Metformin can restore insulin signaling.
Area of Science:
- Endocrinology
- Molecular Biology
- Metabolic Syndrome
Background:
- Soluble insulin receptor (sIR), the ectodomain of the insulin receptor (IR), is found in human plasma and correlates with blood glucose and insulin sensitivity.
- IR cleavage by calpain 2 generates sIR, and subsequent γ-secretase cleavage impairs insulin signaling in a glucose-dependent manner.
- sIR levels exhibit inter-individual variability even in subjects with normal glucose levels.
Purpose of the Study:
- To investigate sIR levels in pregnant women throughout gestation.
- To elucidate the molecular mechanisms of IR cleavage induced by estradiol using an in vitro model.
Main Methods:
- Analysis of sIR levels in pregnant women across gestation.
- In vitro experiments using estradiol to induce IR cleavage and assess effects on insulin signaling.
- Investigation of the roles of calpain 2, γ-secretase, and estrogen receptors in estradiol-induced IR cleavage.
- Assessment of metformin's effects on IR cleavage and insulin signaling.
Main Results:
- Plasma sIR levels in pregnant women positively correlated with estrogen levels and increased significantly in late pregnancy, independent of glucose levels.
- In vitro, estradiol induced IR cleavage and impaired insulin signaling via the G protein-coupled estrogen receptor.
- Estradiol upregulated calpain 2 expression and exosome secretion, increasing extracellular calpain 2.
- High glucose and estradiol had a synergistic effect on IR cleavage.
- Metformin inhibited calpain 2 release and restored estrogen-impaired insulin signaling.
Conclusions:
- Estradiol-induced IR cleavage contributes to cellular insulin resistance through mechanisms similar to high glucose.
- Elevated sIR levels in late pregnancy are linked to increased estrogen levels.
- Estradiol-induced IR cleavage is implicated in the etiology of insulin resistance in gestational diabetes mellitus and pregnancy-related diabetes.
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