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一种用于研究骨骼肌中葡萄糖转运蛋白4myc调控的转基因小鼠模型。

A transgenic mouse model to study glucose transporter 4myc regulation in skeletal muscle.

作者信息

Schertzer Jonathan D, Antonescu Costin N, Bilan Philip J, Jain Swati, Huang Xudong, Liu Zhi, Bonen Arend, Klip Amira

机构信息

Cell Biology Program, The Hospital for Sick Children, Toronto, Ontario, Canada.

出版信息

Endocrinology. 2009 Apr;150(4):1935-40. doi: 10.1210/en.2008-1372. Epub 2008 Dec 12.

Abstract

Skeletal muscle is the major site for dietary glucose disposal, taking up glucose via glucose transporter 4 (GLUT4). Although subcellular fractionation studies demonstrate that insulin increases GLUT4 density in sarcolemma and transverse tubules, fractionation cannot discern GLUT4 vesicle-membrane association from insertion and exofacial exposure. Clonal muscle cultures expressing exofacially tagged GLUT4 have allowed quantification of GLUT4 exposure at the cell surface, its exocytosis, endocytosis, and partner proteins. We hypothesized that transgenic expression of GLUT4myc in skeletal muscles would provide a useful model to investigate GLUT4 biology in vivo. A homozygous mouse colony was generated expressing GLUT4myc driven by the muscle creatine kinase (MCK) promoter. GLUT4 protein levels were about 3-fold higher in hindlimb muscles of MCK-GLUT4myc transgenic mice compared with littermates (P < 0.05). Insulin (12 nm, 30 min) induced a 2.1-fold increase in surface GLUT4myc detected by immunofluorescence of the exofacial myc epitope in nonpermeabilized muscle fiber bundles (P < 0.05). Glucose uptake and surface GLUT4myc levels were 3.5- and 3-fold higher, respectively, in giant membrane vesicles blebbed from hindlimb muscles of insulin-stimulated transgenic mice compared with unstimulated counterparts (P < 0.05). Muscle contraction also elevated both parameters, an effect partially additive to insulin's. GLUT4myc immunoprecipitation with anti-myc antibodies avoids interfering with associated intracellular binding proteins. Tether, containing a UBX domain, for GLUT4 coimmunoprecipitated with GLUT4myc and insulin stimulation significantly decreased such association (P < 0.05). MCK-GLUT4myc transgenic mice are thus useful to quantify exofacial GLUT4 exposure at the sarcolemma and GLUT4 binding partners in skeletal muscle, essential elements in the investigation of muscle GLUT4 regulation in physiological and pathological states in vivo.

摘要

骨骼肌是膳食葡萄糖代谢的主要场所,通过葡萄糖转运蛋白4(GLUT4)摄取葡萄糖。尽管亚细胞分级分离研究表明胰岛素可增加肌膜和横管中GLUT4的密度,但分级分离无法区分GLUT4囊泡与膜的结合、插入及膜外暴露。表达膜外标记GLUT4的克隆肌肉培养物能够对细胞表面的GLUT4暴露、胞吐作用、内吞作用及伴侣蛋白进行定量分析。我们推测,在骨骼肌中GLUT4myc的转基因表达将为体内研究GLUT4生物学特性提供一个有用的模型。通过肌肉肌酸激酶(MCK)启动子驱动,产生了一个表达GLUT4myc的纯合小鼠群体。与同窝小鼠相比,MCK - GLUT4myc转基因小鼠后肢肌肉中的GLUT4蛋白水平约高3倍(P < 0.05)。在未通透的肌纤维束中,通过对膜外myc表位进行免疫荧光检测,胰岛素(12 nM,30分钟)可使表面GLUT4myc增加2.1倍(P < 0.05)。与未刺激的对照相比,胰岛素刺激的转基因小鼠后肢肌肉产生的巨大膜泡中的葡萄糖摄取和表面GLUT4myc水平分别高3.5倍和3倍(P < 0.05)。肌肉收缩也可提高这两个参数,其作用与胰岛素的作用部分相加。用抗myc抗体进行GLUT4myc免疫沉淀可避免干扰相关的细胞内结合蛋白。含有UBX结构域的GLUT4拴系蛋白与GLUT

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