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首页> 外文期刊>Archives of Biochemistry and Biophysics >Interactions between GIPC-APPL and GIPC-TRP1 regulate melanosomal protein trafficking and melanogenesis in human melanocytes
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Interactions between GIPC-APPL and GIPC-TRP1 regulate melanosomal protein trafficking and melanogenesis in human melanocytes

机译:GIPC-APPL和GIPC-TRP1之间的相互作用调节人黑素细胞中的黑素体蛋白运输和黑素生成

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By virtue of the presence of multiple protein-protein interaction and signaling domains, PDZ proteins play important roles in assembling protein complexes that participate in diverse cell biological processes. GIPC is a versatile PDZ protein that binds a variety of target proteins in different cell types. In previous studies we showed that, in epidermal melanocytes, GIPC interacts with newly synthesized melanosomal protein TRP1 in the Golgi region and proposed that this interaction may facilitate intracellular trafficking of TRP1. However, since GIPC contains a single PDZ domain and no other known protein interaction motifs, it is not known how GIPC-TRP1 interaction affects melanosome biogenesis and/or melanin pigmentation. Here, we show that in human primary melanocytes GIPC interacts with AKT-binding protein APPL (adaptor protein containing pleckstrin homology, leucine zipper and phosphotyrosine binding domains), which readily co-precipitates with newly synthesized TRP1. Knockdown of either GIPC or APPL inhibits melanogenesis by decreasing tyrosinase protein levels and enzyme activity. In melanocytes, APPL exists in a complex with GIPC and phospho-AKT. Inhibition of AKT phosphorylation using a PI3-kinase inhibitor abolishes this interaction and results in retardation TRP1 in the Golgi. These data suggest that interactions between TRP1-GIPC and GIPC-APPL-AKT provide a potential link between melanogenesis and PI3 kinase signaling.
机译:由于存在多个蛋白质-蛋白质相互作用和信号传导域,PDZ蛋白质在组装参与多种细胞生物学过程的蛋白质复合物中起着重要作用。 GIPC是一种多功能的PDZ蛋白,可结合不同细胞类型中的多种靶蛋白。在以前的研究中,我们表明,在表皮黑素细胞中,GIPC与高尔基地区的新合成的黑素体蛋白TRP1相互作用,并提出这种相互作用可能促进TRP1的细胞内运输。但是,由于GIPC包含单个PDZ域,没有其他已知的蛋白质相互作用基序,因此不知道GIPC-TRP1相互作用如何影响黑素体的生物发生和/或黑色素的色素沉着。在这里,我们显示在人原代黑素细胞中,GIPC与AKT结合蛋白APPL(包含pleckstrin同源性,亮氨酸拉链和磷酸酪氨酸结合域的适配蛋白)相互作用,该蛋白容易与新合成的TRP1共沉淀。击倒GIPC或APPL可通过降低酪氨酸酶蛋白水平和酶活性来抑制黑色素生成。在黑素细胞中,APPL与GIPC和磷酸化AKT形成复合物。使用PI3激酶抑制剂抑制AKT磷酸化可消除这种相互作用,并导致高尔基体中的TRP1阻滞。这些数据表明,TRP1-GIPC和GIPC-APPL-AKT之间的相互作用提供了黑色素生成和PI3激酶信号传导之间的潜在联系。

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