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首页> 外文期刊>Journal of proteome research >Insulin-dependent interactions of proteins with GLUT4 revealed through stable isotope labeling by amino acids in cell culture (SILAC).
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Insulin-dependent interactions of proteins with GLUT4 revealed through stable isotope labeling by amino acids in cell culture (SILAC).

机译:蛋白质与GLUT4的胰岛素依赖性相互作用通过细胞培养物中氨基酸的稳定同位素标记(SILAC)得以揭示。

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The insulin-regulated glucose transporter (GLUT4) translocates to the plasma membrane in response to insulin in order to facilitate the postprandial uptake of glucose into fat and muscle cells. While early insulin receptor signaling steps leading to this translocation are well defined, the integration of signaling and regulation of GLUT4 traffic remains elusive. Several lines of evidence suggest an important role for the actin cytoskeleton and for protein-protein interactions in regulating GLUT4 localization by insulin. Here, we applied stable isotope labeling by amino acids in cell culture (SILAC) to identify proteins that interact with GLUT4 in an insulin-regulated manner. Myc-tagged GLUT4 (GLUT4myc) stably expressed in L6 myotubes was immunoprecipitated via the myc epitope from total membranes isolated from basal and insulin-stimulated cells grown in medium containing normal isotopic abundance leucine or deuterated leucine, respectively. Proteins coprecipitating with GLUT4myc were analyzed by liquidchromatography/ tandem mass spectrometry. Of 603 proteins quantified, 36 displayed an insulin-dependent change of their interaction with GLUT4myc of more than 1.5-fold in either direction. Several cytoskeleton-related proteins were elevated in immunoprecipates from insulin-treated cells, whereas components of the ubiquitin-proteasome degradation system were generally reduced. Proteins participating in vesicle traffic also displayed insulin-regulated association. Of cytoskeleton-related proteins, alpha-actinin-4 recovery in GLUT4 immunoprecipitates rose in response to insulin 2.1 +/- 0.5-fold by SILAC and 2.9 +/- 0.8-fold by immunoblotting. Insulin caused GLUT4 and alpha-actinin-4 co-localization as revealed by confocal immunofluorescence microscopy. We conclude that insulin elicits changes in interactions between diverse proteins and GLUT4, and that cytoskeletal proteins, notably alpha-actinin-4, associate with the transporter, potentially to facilitate its routing to the plasma membrane.
机译:胰岛素调节的葡萄糖转运蛋白(GLUT4)响应胰岛素而转移到质膜,以促进餐后葡萄糖吸收到脂肪和肌肉细胞中。尽管导致这种易位的早期胰岛素受体信号转导步骤已得到明确定义,但信号转导和GLUT4流量调节的整合仍然难以捉摸。几条证据表明,肌动蛋白的细胞骨架和蛋白质间相互作用在胰岛素调节GLUT4定位中起着重要作用。在这里,我们通过细胞培养中的氨基酸(SILAC)进行了稳定同位素标记,以鉴定以胰岛素调节方式与GLUT4相互作用的蛋白质。通过myc表位,从分别在含有正常同位素丰度亮氨酸或氘代亮氨酸的培养基中生长的基础和胰岛素刺激的细胞分离的总膜上,通过myc表位免疫沉淀在L6肌管中稳定表达的Myc标记的GLUT4(GLUT4myc)。通过液相色谱/串联质谱法分析与GLUT4myc共沉淀的蛋白质。在603种定量蛋白质中,有36种蛋白质与GLUT4myc相互作用的胰岛素依赖性变化在任一方向上均超过1.5倍。来自胰岛素处理细胞的免疫沉淀物中几种与细胞骨架相关的蛋白质均升高,而泛素-蛋白酶体降解系统的成分通常降低。参与囊泡运输的蛋白质也显示出胰岛素调节的关联。在细胞骨架相关蛋白中,GLAC4免疫沉淀物中α-actinin-4的回收率上升,响应于SILAC胰岛素为2.1 +/- 0.5倍,免疫印迹为2.9 +/- 0.8倍。共聚焦免疫荧光显微镜检查显示,胰岛素引起GLUT4和α-actinin-4共定位。我们得出结论,胰岛素引起多种蛋白质与GLUT4之间相互作用的改变,并且细胞骨架蛋白质(尤其是α-actinin-4)与转运蛋白缔合,可能促进其转运至质膜。

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