首页> 外文期刊>Biochimica et biophysica acta. Molecular cell research >Lysine 394 is a novel Rad6B-induced ubiquitination site on beta-catenin
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Lysine 394 is a novel Rad6B-induced ubiquitination site on beta-catenin

机译:赖氨酸394是Rad6B诱导的β-catenin上的泛素化位点

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The ubiquitin conjugating enzyme Rad6B is overexpressed in breast cancer and induces β-catenin transcriptional activation and stabilization via K63-linked polyubiquitination. Here we identify β-catenin and Rad6B interacting regions, identify potential Rad6B ubiquitination sites in β-catenin, and characterize their breast cancer tissue expression. β-catenin and Rad6B colocalize in breast carcinoma and coimmunoprecipitate from MDA-MB-231 cells. Pull-down assays using GST-β-catenin and His-Rad6B deletion mutants identified amino acids 131-181 and 50-116, respectively, as necessary for their interaction. Ubiquitination assays using β-catenin deletion mutants mapped Rad6B-induced ubiquitination within β-catenin 181-422 encompassing Armadillo repeats 2-7. Lysine to arginine mutations within repeats 5-7 identified K394 as the major Rad6B ubiquitination site in vitro and in vivo, and confirmed by Rad6B ubiquitination of a β-catenin peptide encompassing K394. Ubiquitination of wild type- but not K394R-β-catenin was decreased by Rad6B silencing. Compared to wild type-, K312R-, K335R-, K345R-, or K354R-β-catenin, K394R mutation caused ~50% drop in TOP/Flash activity in Wnt-silent MCF-7 cells. Consistent with these data, expression of Rad6B, itself a β-catenin/TCF transcriptional target, was also reduced in K394R-β-catenin transfected cells. Steady-state K394R-β-catenin levels are decreased compared to wild type-β-catenin. The decreased expression is not due to proteasomal degradation as treatment with MG132 failed to rescue its levels. Lymph node-positive breast carcinomas express higher levels of Rad6 protein and Rad6 activity, and K63-linked ubiquitinated β-catenin than reduction mammoplasties. These data suggest that K394 is a novel site of β-catenin ubiquitination that may be important for the stability and activity of β-catenin in breast cancer.
机译:泛素结合酶Rad6B在乳腺癌中过表达,并通过K63连接的多泛素化诱导β-catenin转录激活和稳定。在这里,我们确定了β-catenin和Rad6B相互作用的区域,确定了β-catenin中潜在的Rad6B泛素化位点,并表征了它们在乳腺癌组织中的表达。 β-catenin和Rad6B在乳腺癌中共定位,并从MDA-MB-231细胞中共免疫沉淀。使用GST-β-catenin和His-Rad6B缺失突变体的下拉测定法分别鉴定了氨基酸131-181和50-116,这是它们相互作用所必需的。使用β-catenin缺失突变体的泛素化测定法在RadaB诱导的β-catenin181-422内(包括犰狳重复2-7)绘制了泛素化。重复序列5-7中的赖氨酸至精氨酸突变在体外和体内将K394鉴定为主要的Rad6B泛素化位点,并通过Rad6B对包含K394的β-连环蛋白肽进行泛素化来证实。 Rad6B沉默可降低野生型(而非K394R-β-catenin)的泛素化。与野生型,K312R-,K335R-,K345R-或K354R-β-catenin相比,K394R突变导致Wnt沉默MCF-7细胞的TOP / Flash活性降低了约50%。与这些数据一致,在K394R-β-catenin转染的细胞中,本身是β-catenin/ TCF转录靶的Rad6B的表达也降低了。与野生型β-catenin相比,稳态K394R-β-catenin水平降低。表达降低不是由于蛋白酶体降解,因为用MG132治疗不能挽救其​​水平。淋巴结阳性乳腺癌表达的Rad6蛋白和Rad6活性较高,而K63连接的泛素化β-catenin则比乳腺成形术低。这些数据表明,K394是β-catenin泛素化的一个新位点,可能对乳腺癌中β-catenin的稳定性和活性很重要。

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