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横纹肌特异性整合素受体β1缺陷小鼠的胰岛素抵抗

Insulin resistance in striated muscle-specific integrin receptor beta1-deficient mice.

作者信息

Zong Haihong, Bastie Claire C, Xu Jun, Fassler Reinhard, Campbell Kevin P, Kurland Irwin J, Pessin Jeffrey E

机构信息

Departments of Medicine and Molecular Pharmacology, Albert Einstein College of Medicine, Bronx, New York 10461, USA.

出版信息

J Biol Chem. 2009 Feb 13;284(7):4679-88. doi: 10.1074/jbc.M807408200. Epub 2008 Dec 8.

Abstract

Integrin receptor plays key roles in mediating both inside-out and outside-in signaling between cells and the extracellular matrix. We have observed that the tissue-specific loss of the integrin beta1 subunit in striated muscle results in a near complete loss of integrin beta1 subunit protein expression concomitant with a loss of talin and to a lesser extent, a reduction in F-actin content. Muscle-specific integrin beta1-deficient mice had no significant difference in food intake, weight gain, fasting glucose, and insulin levels with their littermate controls. However, dynamic analysis of glucose homeostasis using euglycemichyperinsulinemic clamps demonstrated a 44 and 48% reduction of insulin-stimulated glucose infusion rate and glucose clearance, respectively. The whole body insulin resistance resulted from a specific inhibition of skeletal muscle glucose uptake and glycogen synthesis without any significant effect on the insulin suppression of hepatic glucose output or insulin-stimulated glucose uptake in adipose tissue. The reduction in skeletal muscle insulin responsiveness occurred without any change in GLUT4 protein expression levels but was associated with an impairment of the insulin-stimulated protein kinase B/Akt serine 473 phosphorylation but not threonine 308. The inhibition of insulin-stimulated serine 473 phosphorylation occurred concomitantly with a decrease in integrin-linked kinase expression but with no change in the mTOR.Rictor.LST8 complex (mTORC2). These data demonstrate an in vivo crucial role of integrin beta1 signaling events in mediating cross-talk to that of insulin action.

摘要

整合素受体在介导细胞与细胞外基质之间的外向内和内向外信号传导中发挥关键作用。我们观察到,横纹肌中整合素β1亚基的组织特异性缺失导致整合素β1亚基蛋白表达几乎完全丧失,同时伴有踝蛋白的丧失,并且在较小程度上,F-肌动蛋白含量降低。肌肉特异性整合素β1缺陷小鼠与同窝对照小鼠在食物摄入量、体重增加、空腹血糖和胰岛素水平方面没有显著差异。然而,使用正常血糖高胰岛素钳夹技术对葡萄糖稳态进行动态分析表明,胰岛素刺激的葡萄糖输注率和葡萄糖清除率分别降低了44%和48%。全身胰岛素抵抗是由骨骼肌葡萄糖摄取和糖原合成的特异性抑制引起的,而对胰岛素抑制肝葡萄糖输出或胰岛素刺激的脂肪组织葡萄糖摄取没有任何显著影响。骨骼肌胰岛素反应性的降低在GLUT4蛋白表达水平没有任何变化的情况下发生,但与胰岛素刺激的蛋白激酶B/Akt丝氨酸473磷酸化受损有关,而苏氨酸308没有变化。胰岛素刺激的丝氨酸473磷酸化的抑制与整合素连接激酶表达的降低同时发生,但mTOR.Rictor.LST8复合物(mTORC2)没有变化。这些数据证明了整合素β1信号事件在介导与胰岛素作用的相互作用中的体内关键作用。

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