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首页> 外文期刊>Journal of Molecular Biology >The third 20 amino acid repeat is the tightest binding site of APC for beta-catenin
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The third 20 amino acid repeat is the tightest binding site of APC for beta-catenin

机译:第三个20个氨基酸重复序列是APC与β-catenin的最紧密结合位点

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Adenomatous polyposis coli (APC) plays a critical role in the Wnt signaling pathway by tightly regulating beta-catenin turnover and localization. The central region of APC is responsible for APC-beta-catenin interactions through its seven 20 amino acid (20aa) repeats and three 15 amino acid (15aa) repeats. Using isothermal titration calorimetry, we have determined the binding affinities of beta-catenin with an APC 15aa repeat fragment and each of the seven 20aa repeats in both phosphorylated and unphosphorylated states. Despite sequence homology, different beta-catenin binding repeats of APC have dramatically different binding affinities with beta-catenin and thus may play different biological roles. The third 20aa repeat is by far the tightest binding site for beta-catenin among all the repeats. The fact that most APC mutations associated with colon cancers have lost the third 20aa repeat underlines the importance of APC-beta-catenin interaction in Wnt signaling and human diseases. For every 20aa repeat, phosphorylation dramatically increases its binding affinity for beta-catenin, Suggesting phosphorylation has a critical regulatory role in APC function. In addition, our CD and NMR studies demonstrate that the central region of APC is unstructured in the absence of beta-catenin and Axin, and suggest that beta-catenin may interact with each of the APC 15aa and 20aa repeats independently. Published by Elsevier Ltd.
机译:腺瘤性息肉病大肠杆菌(APC)通过严格调节β-catenin转化和定位在Wnt信号通路中起关键作用。 APC的中央区域通过其七个20个氨基酸(20aa)重复序列和三个15个氨基酸(15aa)重复序列负责APC-β-catenin相互作用。使用等温滴定量热法,我们已经确定了β-catenin与APC 15aa重复片段的结合亲和力以及七个20aa重复的磷酸化和非磷酸化状态中的每一个。尽管有序列同源性,但APC的不同β-catenin结合重复序列与β-catenin的结合亲和力显着不同,因此可能发挥不同的生物学作用。到目前为止,第三个20aa重复序列是所有重复序列中最紧密的β-catenin结合位点。大多数与结肠癌相关的APC突变丢失了第三个20aa重复序列,这一事实强调了APC-β-catenin相互作用在Wnt信号传导和人类疾病中的重要性。每重复20aa,磷酸化就会大大增加其与β-catenin的结合亲和力,这表明磷酸化在APC功能中起着至关重要的调节作用。此外,我们的CD和NMR研究表明,在没有β-连环蛋白和Axin的情况下,APC的中央区域是无结构的,并暗示β-连环蛋白可能与APC 15aa和20aa重复序列各自独立地相互作用。由Elsevier Ltd.发布

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