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Biochemical analysis of connexin43 intracellular transport phosphorylation and assembly into gap junctional plaques

机译:连接蛋白43细胞内转运磷酸化和组装成间隙连接斑块的生化分析

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摘要

We previously demonstrated that the gap junction protein connexin43 is translated as a 42-kD protein (connexin43-NP) that is efficiently phosphorylated to a 46,000-Mr species (connexin43-P2) in gap junctional communication-competent, but not in communication-deficient, cells. In this study, we used a combination of metabolic radiolabeling and immunoprecipitation to investigate the assembly of connexin43 into gap junctions and the relationship of this event to phosphorylation of connexin43. Examination of the detergent solubility of connexin43 in communication-competent NRK cells revealed that processing of connexin43 to the P2 form was accompanied by acquisition of resistance to solubilization in 1% Triton X-100. Immunohistochemical localization of connexin43 in Triton-extracted NRK cells demonstrated that connexin43-P2 (Triton-insoluble) was concentrated in gap junctional plaques, whereas connexin43-NP (Triton-soluble) was predominantly intracellular. Using either a 20 degrees C intracellular transport block or cell-surface protein biotinylation, we determined that connexin43 was transported to the plasma membrane in the Triton-soluble connexin43-NP form. Cell-surface biotinylated connexin43-NP was processed to Triton-insoluble connexin43-P2 at 37 degrees C. Connexin43- NP was also transported to the plasma membrane in communication defective, gap junction-deficient S180 and L929 cells but was not processed to Triton-insoluble connexin43-P2. Taken together, these results demonstrate that gap junction assembly is regulated after arrival of connexin43 at the plasma membrane and is temporally associated with acquisition of insolubility in Triton X-100 and phosphorylation to the connexin43-P2 form.
机译:我们先前证明间隙连接蛋白connexin43被翻译为42-kD蛋白(connexin43-NP),该蛋白在间隙连接沟通能力中有效地磷酸化为46,000-Mr物种(connexin43-P2),但在沟通缺陷时没有, 细胞。在这项研究中,我们使用了代谢放射标记和免疫沉淀相结合的方法来研究连接蛋白43进入间隙连接的组装以及该事件与连接蛋白43磷酸化的关系。对连接蛋白43在通讯能力强的NRK细胞中去污剂溶解度的检查表明,连接蛋白43加工成P2形式伴随着在1%Triton X-100中获得的对增溶的抗性。连接蛋白43在Triton提取的NRK细胞中的免疫组织化学定位表明连接蛋白43-P2(Triton不溶)集中在间隙连接斑块中,而连接蛋白43-NP(Triton可溶)主要在细胞内。使用20°C的细胞内运输阻滞或细胞表面蛋白生物素化,我们确定连接蛋白43以Triton可溶性连接蛋白43-NP的形式被运输到质膜。细胞表面生物素化的连接蛋白43-NP在37摄氏度下被加工成Triton不溶的连接蛋白43-P2。连接蛋白43-NP也被运输到通讯缺陷,间隙连接缺陷的S180和L929细胞中的质膜,但未被加工成Triton-不溶连接蛋白43-P2。综上所述,这些结果表明间隙连接组装在连接蛋白43到达质膜后受到调节,并且在时间上与Triton X-100中不溶性的获得和连接蛋白43-P2形式的磷酸化有关。

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