首页> 美国卫生研究院文献>The Journal of Clinical Investigation >Altered interaction of Cis-dichlorodiammineplatinum(II)--modified alpha 2-macroglobulin (alpha 2M) with the low density lipoprotein receptor-related protein/alpha 2M receptor but not the alpha 2M signaling receptor.
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Altered interaction of Cis-dichlorodiammineplatinum(II)--modified alpha 2-macroglobulin (alpha 2M) with the low density lipoprotein receptor-related protein/alpha 2M receptor but not the alpha 2M signaling receptor.

机译:Cis-dichlorodiammineplatinum(II)修饰的alpha 2-巨球蛋白(alpha 2M)与低密度脂蛋白受体相关蛋白/ alpha 2M受体但不是alpha 2M信号受体的相互作用发生了改变。

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摘要

Receptor-recognized forms of alpha 2-macroglobulin (alpha 2M*) bind to two macrophage receptors: an endocytic receptor, the low density lipoprotein receptor-related protein/alpha 2M receptor (LRP/alpha 2MR), and a G protein-coupled receptor, the alpha 2M signaling receptor (alpha 2MSR). Binding of alpha 2M* to LRP/alpha 2MR but not alpha 2MSR is inhibited by receptor-associated protein. We now present binding characteristics of alpha 2MSR (kD approximately 50 pm; 1,530 sites/cell) using Scatchard analysis. We also demonstrate that chemical modification of alpha 2M* with cis-dichlorodiammineplatinum (cis-DDP) does not significantly alter binding to either receptor or signaling characteristics as compared with unmodified alpha 2M*. However, internalization by LRP/alpha 2MR is greatly affected. Cis-DDP-modified alpha 2M* (cis-DDP-alpha 2M*) and alpha 2M* show comparable internalization during a single round of endocytosis; however, cis-DDP modification of alpha 2M* results in a > or = 82% reduction in internalization involving receptor recycling and multiple rounds of endocytosis. Results from pH 5.0 dissociation and receptor recycling experiments suggest that the mechanism of decreased internalization of cis-DDP-alpha 2M* involves poor dissociation from the receptor in endosomes and a decrease in available surface receptors over the time of exposure to the ligand.
机译:受体识别形式的α2-巨球蛋白(α2M *)与两个巨噬细胞受体结合:内吞受体,低密度脂蛋白受体相关蛋白/α2M受体(LRP /α2MR)和G蛋白偶联受体,即alpha 2M信号受体(alpha 2MSR)。受体相关蛋白抑制了α2M *与LRP /α2MR的结合,但不抑制α2MSR的结合。现在,我们使用Scatchard分析提出α2MSR(kD约为50 pm; 1530个位点/细胞)的结合特征。我们还证明了与未修饰的α2M *相比,用顺式二氯二氨合铂(cis-DDP)对α2M *进行化学修饰不会显着改变与受体或信号传导特征的结合。但是,LRP / alpha 2MR的内部化受到很大影响。顺式-DDP-修饰的α2M *(顺式-DDP-α2M *)和α2M *在单轮内吞过程中显示出可比的内在化;但是,α2M*的顺式-DDP修饰导致内在化减少≥82%,涉及受体再循环和多轮内吞作用。 pH 5.0解离和受体回收实验的结果表明,顺式DDP-α2M *内在化的减少机制涉及内体中与受体的解离较差,并且随着暴露于配体的时间减少了可用的表面受体。

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