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首页> 外文期刊>Oncogene >p53 downstream target DDA3 is a novel microtubule-associated protein that interacts with end-binding protein EB3 and activates |[beta]|-catenin pathway
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p53 downstream target DDA3 is a novel microtubule-associated protein that interacts with end-binding protein EB3 and activates |[beta]|-catenin pathway

机译:p53下游靶标DDA3是与末端结合蛋白EB3相互作用并激活|β|-连环蛋白途径的新型微管相关蛋白。

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We have previously identified mouse DDA3 as a p53-inducible gene. To explore the functional role of DDA3, we screened a mouse brain cDNA library by the yeast two-hybrid assay, and identified the microtubule plus-end binding protein EB3 as a DDA3-interacting protein. Binding of DDA3 to EB3 was verified by glutathione S-transferase (GST) pull-down assay and subcellular colocalization; co-immunoprecipitation further indicated that interaction of these two proteins within cells required intact microtubules. Domains of DDA3-EB3 interaction were mapped by GST pull-down assay to amino acids 118–241 and 242–329 of DDA3 and the N- and C-termini of EB3. Immunofluorescence analysis revealed colocalization of DDA3 with microtubules in various cell phases, and regions encompassing aa 118–241 and 242–329 contained microtubule-interacting and bundling activities. In vitro microtubule-binding assay showed that DDA3 and EB3 associated directly with microtubules, and cooperated with each other for microtubule binding. In addition, DDA3 bound to the EB3 interacting partner adenomatous polyposis coli 2 (APC2), a homolog of the tumor suppressor APC, which is a component of the -catenin destruction complex. Ectopic expression of DDA3 and EB3 enhanced -catenin-dependent transactivation and cyclin D1 production, whereas knockdown of endogenous DDA3 or EB3 inhibited -catenin-mediated transactivation and the ability of cells to form colonies. Together, our results identify DDA3 as a novel microtubule-associated protein that binds to EB3, and implicate DDA3 and EB3 in the -catenin-mediated growth signaling.
机译:我们以前已经确定了小鼠DDA3为p53诱导基因。为了探索DDA3的功能,我们通过酵母双杂交检测筛选了小鼠大脑cDNA文库,并将微管正端结合蛋白EB3鉴定为DDA3相互作用蛋白。 DDA3与EB3的结合通过谷胱甘肽S-转移酶(GST)下拉测定和亚细胞共定位来验证;免疫共沉淀进一步表明,细胞内这两种蛋白质的相互作用需要完整的微管。通过GST下拉测定法将DDA3-EB3相互作用的域映射到DDA3的氨基酸118-241和242-329以及EB3的N和C末端。免疫荧光分析显示DDA3与微管在各个细胞相中共定位,并且包含118-241和242-329氨基酸的区域包含微管相互作用和捆绑活性。体外微管结合试验表明,DDA3和EB3直接与微管结合,并相互协作进行微管结合。此外,DDA3与EB3相互作用伴侣腺瘤性息肉病2(APC2)结合,这是肿瘤抑制因子APC的同系物,它是-catenin破坏复合物的一个组成部分。 DDA3和EB3的异位表达增强了-catenin依赖性反式激活和细胞周期蛋白D1的产生,而敲除内源性DDA3或EB3则抑制了-catenin介导的反式激活和细胞形成菌落的能力。在一起,我们的结果确定DDA3是一种新型的与EB3结合的微管相关蛋白,并暗示DDA3和EB3参与-catenin介导的生长信号传导。

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