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Candidate tumor suppressor B-cell translocation gene 3 impedes neoplastic progression by suppression of AKT

机译:候选肿瘤抑制物B细胞易位基因3通过抑制AKT阻止肿瘤进展

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摘要

BTG3 (B-cell translocation gene 3) is a p53 target that also binds and inhibits E2F1. Although it connects two major growth-regulatory pathways functionally and is downregulated in human cancers, whether and how BTG3 acts as a tumor suppressor remain largely uncharacterized. Here we present evidence that BTG3 binds and suppresses AKT, a kinase frequently deregulated in cancers. BTG3 ablation results in increased AKT activity that phosphorylates and inhibits glycogen synthase kinase 3β. Consequently, we also observed elevated β-catenin/T-cell factor activity, upregulation of mesenchymal markers, and enhanced cell migration. Consistent with these findings, BTG3 overexpression suppressed tumor growth in mouse xenografts, and was associated with diminished AKT phosphorylation and reduced β-catenin in tissue specimens. Significantly, a short BTG3-derived peptide was identified, which recapitulates these effects in vitro and in cells. Thus, our study provides mechanistic insights into a previously unreported AKT inhibitory pathway downstream of p53. The identification of an AKT inhibitory peptide also unveils a new avenue for cancer therapeutics development.
机译:BTG3(B细胞易位基因3)是p53靶标,也可结合并抑制E2F1。尽管BTG3在功能上连接了两个主要的生长调节途径,并在人类癌症中被下调,但BTG3是否以及如何充当肿瘤抑制物仍然很大程度上未知。在这里,我们提供证据表明BTG3结合并抑制了AKT(一种经常在癌症中失活的激酶)。 BTG3切除导致增加的AKT活性,使磷酸化并抑制糖原合酶激酶3β。因此,我们还观察到β-catenin/ T细胞因子活性升高,间充质标记物上调和细胞迁移增强。与这些发现一致的是,BTG3的过表达抑制了小鼠异种移植物中的肿瘤生长,并且与组织样本中AKT磷酸化减少和β-catenin减少有关。重要的是,鉴定了短的BTG3衍生的肽,其在体外和细胞中概括了这些作用。因此,我们的研究为p53下游以前未报道的AKT抑制途径提供了机械学见解。 AKT抑制肽的鉴定也为癌症治疗方法的开发开辟了一条新途径。

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