首页> 美国卫生研究院文献>Biochemical Journal >Failure of insulin-regulated recruitment of the glucose transporter GLUT4 in cardiac muscle of obese Zucker rats is associated with alterations of small-molecular-mass GTP-binding proteins.
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Failure of insulin-regulated recruitment of the glucose transporter GLUT4 in cardiac muscle of obese Zucker rats is associated with alterations of small-molecular-mass GTP-binding proteins.

机译:肥胖Zucker大鼠心肌中胰岛素调节的葡萄糖转运蛋白GLUT4募集失败与小分子质量GTP结合蛋白的改变有关。

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摘要

Cardiac ventricular tissue of lean and genetically obese (fa/fa) Zucker rats was used to study the expression, subcellular distribution and insulin-induced recruitment of the glucose transporter GLUT4 and to elucidate possible molecular alterations of the translocation process. Hearts were removed from basal and insulin-treated (20 min) lean and obese Zucker rats, and processed for subcellular fractionation and Western blotting of proteins. In obese rats, the total GLUT4 content in a crude membrane fraction was reduced to 75 +/- 8% (P = 0.019) of lean controls. In contrast, GLUT4 abundance in plasma membranes was not significantly different between lean and obese rats with a concomitant decrease (47 +/- 3%) in the microsomal fraction of obese animals. In plasma membranes of lean animals insulin was found to increase the GLUT4 abundance to 294 +/- 43% of control with a significantly (P = 0.009) reduced effect in the obese group (139 +/- 10% of control). In these animals insulin failed to recruit GLUT4 from the microsomal fraction, whereas the hormone induced a significant decrease (41 +/- 4%) of microsomal GLUT4 in lean controls. In GLUT4-enriched membrane vesicles, obtained from cardiac microsomes of lean rats, a 24 kDa GTP-binding protein could be detected, whereas no significant labelling of this species was observed in GLUT4 vesicles prepared from obese animals. In addition to the translocation of GLUT4, insulin was found to promote the movement of the small GTP-binding protein rab4A from the cytosol (decrease to 61 +/- 13% of control) to the plasma membrane (increase to 177 +/- 19% of control) in lean rats with no effect of the hormone on rab4A redistribution in the obese group. In conclusion, cardiac glucose uptake of insulin-resistant obese Zucker rats is subject to multiple cellular abnormalities involving a reduced expression, altered redistribution and defective recruitment of GLUT4. We show here an association of the latter defect with alterations at the level of small GTP-binding proteins possibly leading to an impaired trafficking of GLUT4 in the insulin-resistant state.
机译:瘦和遗传肥胖(fa / fa)Zucker大鼠的心室组织用于研究葡萄糖转运蛋白GLUT4的表达,亚细胞分布和胰岛素诱导的募集,并阐明易位过程的可能分子改变。从基础和经胰岛素治疗(20分钟)的肥胖和肥胖的Zucker大鼠中取出心脏,并对其进行亚细胞分离和蛋白质蛋白质印迹处理。在肥胖的大鼠中,粗脂肪膜部分的总GLUT4含量降至瘦对照的75 +/- 8%(P = 0.019)。相比之下,瘦和肥胖大鼠之间质膜的GLUT4丰度没有显着差异,肥胖动物的微粒体部分伴随着下降(47 +/- 3%)。在瘦肉动物的质膜中,发现胰岛素使GLUT4的丰度增加到对照组的294 +/- 43%,而在肥胖组(对照组的139 +/- 10%)中效果显着(P = 0.009)降低。在这些动物中,胰岛素未能从微粒体级分募集GLUT4,而该激素在瘦肉对照组中诱导微粒体GLUT4显着降低(41 +/- 4%)。在从瘦大鼠心脏微粒体获得的富含GLUT4的膜囊泡中,可以检测到24 kDa GTP结合蛋白,而在从肥胖动物制备的GLUT4囊泡中未观察到该物种的明显标记。除了GLUT4的易位外,还发现胰岛素可以促进小GTP结合蛋白rab4A从胞质溶胶(减少至对照的61 +/- 13%)到质膜的运动(增加到177 +/- 19)肥胖组中没有激素对rab4A重新分布没有影响的瘦大鼠中的百分比。总之,胰岛素抵抗型肥胖Zucker大鼠的心脏葡萄糖摄取受到多种细胞异常的影响,涉及GLUT4的表达降低,重新分布改变和募集缺陷。我们在此处显示了后者缺陷与小GTP结合蛋白水平改变的关联,这可能导致胰岛素抵抗状态下GLUT4的运输受损。

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