首页> 美国卫生研究院文献>Biochemical Journal >Demonstration of specific insulin binding to cytosolic proteins in H35 hepatoma cells rat liver and skeletal muscle.
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Demonstration of specific insulin binding to cytosolic proteins in H35 hepatoma cells rat liver and skeletal muscle.

机译:在H35肝癌细胞大鼠肝脏和骨骼肌中证明特定胰岛素与胞质蛋白结合。

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摘要

We previously demonstrated that internalized insulin enters the cytoplasm before accumulating in nuclei of H35 rat hepatoma cells. This finding raises the possibility that insulin may interact with cytosolic proteins in addition to insulin-degrading enzyme (IDE). In the present study, cytosol from H35 hepatoma cells, rat liver or muscle was incubated with A14- or B26-125I-insulin at 4 degrees C for 5-120 min in the absence or presence of 25 micrograms/ml unlabelled insulin. 125I-insulin was cross-linked to cytosolic proteins by disuccinimidyl suberate and analysed by reducing or non-reducing SDS/PAGE and autoradiography. Our results demonstrate the presence of both tissue-specific and common cytosolic proteins which specifically bind insulin. In muscle cytosol, only two proteins of 27 and 110 kDa were specifically labelled with B26-125I-insulin. Seven major bands, of 27, 45, 55, 60, 76, 82 and 110 kDa, were labelled in rat liver cytosol. Detection of cytosolic insulin-binding proteins in H35-cell cytosol was dependent on cell-culture conditions. Labelling in cytosol from serum-deprived cells was decreased or absent compared with cytosol prepared from serum-fed or serum-deprived cells treated with 100 ng/ml insulin for 1 h before preparation of the cytosol, in which six bands, of 32, 41, 45, 55, 82 and 110 kDa, were specifically labelled with B26-125I-insulin. This result suggests that the concentration or binding activity of some cytosolic insulin-binding proteins is rapidly regulated. Labelling of both rat liver and H35 cytosolic insulin-binding proteins was time-dependent, and decreased or disappeared at 120 min in parallel with the degradation of labelled insulin. Fewer bands were specifically labelled with A14-125I-insulin than with B26-125I-insulin. The number of labelled bands observed under reducing and non-reducing conditions was not different in any of the cytosols. The 110 kDa band in all cytosols was identified as IDE by Western-blot analysis; the other proteins did not react with anti-IDE antibody and remain unidentified. 1,10-Phenanthroline (2 mM) increased IDE labelling, but decreased the labelling of 82 and 27 kDa bands. The marked difference in the number of cytosolic insulin-binding proteins in muscle and either H35 cells or liver suggests both that the labelling is specific and that these proteins serve a function and may be involved in some heretofore unknown mechanism of the signalling pathway by which insulin regulates cell growth or differentiation.
机译:我们以前证明内化的胰岛素进入细胞质,然后在H35大鼠肝癌细胞的细胞核中积累。这一发现增加了胰岛素除胰岛素降解酶(IDE)之外还可能与胞质蛋白相互作用的可能性。在本研究中,在不存在或存在25微克/毫升未标记胰岛素的情况下,将H35肝癌细胞,大鼠肝脏或肌肉的溶质与A14-或B26-125I-胰岛素在4摄氏度下孵育5-120分钟。 125 I-胰岛素通过辛二酸二琥珀酰亚胺基酯交联至胞质蛋白,并通过还原或非还原SDS / PAGE和放射自显影进行分析。我们的结果证明了特异性结合胰岛素的组织特异性和常见胞质蛋白的存在。在肌肉细胞质中,只有27和110 kDa的两种蛋白质被B26-125I-胰岛素特异性标记。在大鼠肝细胞溶胶中标记了七个主要带,分别为27、45、55、60、76、82和110 kDa。 H35细胞溶质中胞质胰岛素结合蛋白的检测取决于细胞培养条件。与用100 ng / ml胰岛素处理1小时的血清喂养或血清缺乏的细胞制备的细胞溶胶相比,血清缺乏的细胞的细胞溶胶中的标签减少或不存在,其中有32条,41条中的6条谱带45、55、82和110 kDa分别用B26-125I-胰岛素标记。该结果表明某些胞质胰岛素结合蛋白的浓度或结合活性被快速调节。大鼠肝脏和H35胞质胰岛素结合蛋白的标记均是时间依赖性的,并在120分钟时降低或消失,与标记的胰岛素降解同时进行。用A14-125I-胰岛素特异性标记的条带少于用B26-125I-胰岛素标记的条带。在还原和非还原条件下观察到的标记条带的数量在任何细胞质中都没有差异。通过蛋白质印迹分析将所有细胞质中的110 kDa谱带鉴定为IDE。其他蛋白未与抗IDE抗体反应,并且尚未鉴定。 1,10-邻菲咯啉(2 mM)增加了IDE标记,但减少了82和27 kDa条带的标记。肌肉和H35细胞或肝脏中胞质胰岛素结合蛋白数量的显着差异表明,标记是特异性的,这些蛋白起功能,可能参与了胰岛素信号通路的某些迄今未知的机制调节细胞生长或分化。

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