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首页> 外文期刊>Molecular biology of the cell >Homo-oligomeric complexes of the yeast alpha-factor pheromone receptor are functional units of endocytosis
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Homo-oligomeric complexes of the yeast alpha-factor pheromone receptor are functional units of endocytosis

机译:酵母α-因子信息素受体的同源寡聚复合物是内吞作用的功能单元

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摘要

alpha-Factor receptors from Saccharomyces cervisiae are G-protein-coupled receptors containing seven transmembrane segments. Receptors solubilized with the detergent n-dodecyl beta-D-maltoside were found to sediment as a single 85 species in glycerol density gradients. When the membranes from cells coexpressing two differentially tagged receptors were solubilized with detergent and subjected to immunoprecipitation, we found that the antibodies specific for either epitope tag resulted in precipitation of both tagged species. Coprecipitation was not a consequence of incomplete detergent extraction because the abundant plasma membrane protein Pma1 did not coprecipitate with the receptors. Moreover, the receptor complexes were present prior to detergent extraction because coimmunoprecipitation was not observed when cells expressing the single tagged species were mixed prior to membrane preparation. Treatment of cultures with alpha-factor had little effect on the extent of oligomerization as judged by the sedimentation behavior of the receptor complexes and by the efficiency of coimmunoprecipitation. The ability of receptor complexes to undergo ligand-mediated endocytosis was evaluated by using membrane fractionation and fluorescence microscopy. Mutant receptors that fail to bind alpha-factor (Ste2-S184R) or lack the endocytosis signal (Ste2-T326) became competent for ligand-mediated endocytosis when they were expressed in cells containing wild-type receptors. Coimmunoprecipitation experiments indicated that the C-terminal cytoplasmic domain and intermolecular disulfide bonds were unnecessary for oligomer formation. We conclude that alpha-factor receptors form homo-oligomers and that these complexes are subject to ligand-mediated endocytosis. Furthermore, we show for the first time that unoccupied receptors participate in these endocytosis-competent complexes. [References: 39]
机译:来自酿酒酵母的α-因子受体是含有七个跨膜区段的G蛋白偶联受体。发现用去污剂正十二烷基β-D-麦芽糖苷增溶的受体在甘油密度梯度中以单一85种形式沉淀。当将共表达两个差异标记受体的细胞膜用去污剂溶解并进行免疫沉淀时,我们发现对任一表位标记具有特异性的抗体都会导致两个标记物质的沉淀。共沉淀不是去污剂提取不完全的结果,因为丰富的质膜蛋白Pma1不会与受体共沉淀。而且,受体复合物在去污剂提取之前就存在,因为在膜制备之前混合表达单个标记物的细胞时未观察到共免疫沉淀。通过受体复合物的沉降行为和共免疫沉淀效率判断,用α-因子处理培养物对寡聚程度的影响很小。受体复合物经历配体介导的内吞作用的能力通过使用膜分级分离和荧光显微镜检查来评估。当突变受体在含有野生型受体的细胞中表达时,不能结合α-因子(Ste2-S184R)或缺乏内吞信号(Ste2-T326)的突变受体就具有配体介导的内吞作用。免疫共沉淀实验表明C端胞质域和分子间二硫键对于形成低聚物是不必要的。我们得出的结论是,α因子受体形成同源寡聚体,并且这些复合物受到配体介导的内吞作用。此外,我们首次显示了空位受体参与这些具有内吞作用的复合物。 [参考:39]

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