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首页> 外文期刊>Oncogene >Par6G suppresses cell proliferation and is targeted by loss-of-function mutations in multiple cancers
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Par6G suppresses cell proliferation and is targeted by loss-of-function mutations in multiple cancers

机译:Par6G抑制细胞增殖,并以多种癌症中的功能丧失突变为目标

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Differentiated epithelial structure communicates with individual constituent epithelial cells to suppress their proliferation activity. However, the pathways linking epithelial structure to cessation of the cell proliferation machinery or to unscheduled proliferation in the context of tumorigenesis are not well defined. Here we demonstrate the strong impact of compromised epithelial integrity on normal and oncogenic Myc-driven proliferation in three-dimensional mammary epithelial organoid culture. Systematic silencing of 34 human homologs of Drosophila genes, with previously established functions in control of epithelial integrity, demonstrates a role for human genes of apico-basal polarity, Wnt and Hippo pathways and actin dynamics in regulation of the size, integrity and cell proliferation in organoids. Perturbation of these pathways leads to diverse functional interactions with Myc: manifested as a RhoA-dependent synthetic lethality and Par6-dependent effects on the cell cycle. Furthermore, we show a role for Par6G as a negative regulator of the phosphatidylinositol 3鈥?kinase/phosphoinositide-dependent protein kinase 1/Akt pathway and epithelial cell proliferation and evidence for frequent inactivation of Par6G gene in epithelial cancers. The findings demonstrate that determinants of epithelial structure regulate the cell proliferation activity via conserved and cancer-relevant regulatory circuitries, which are important for epithelial cell cycle restriction and may provide new targets for therapeutic intervention.
机译:分化的上皮结构与单个组成上皮细胞相通以抑制其增殖活性。然而,在肿瘤发生的背景下,将上皮结构与细胞增殖机制的停止或计划外的增殖联系起来的途径尚不清楚。在这里,我们证明了受损的上皮完整性对三维乳腺上皮类器官培养物中正常和致癌Myc驱动的增殖的强烈影响。系统性沉默的果蝇基因的34人类同系物,具有以前建立的控制上皮完整性的功能,表明人类基因的apico基底极性,Wnt和河马途径和肌动蛋白动态调节大小,完整性和细胞增殖中的作用。类器官。这些途径的扰动导致与Myc发生多种功能相互作用:表现为RhoA依赖的合成杀伤力和Par6依赖的细胞周期效应。此外,我们显示Par6G作为磷脂酰肌醇3'激酶/磷酸肌醇依赖性蛋白激酶1 / Akt途径和上皮细胞增殖的负调节剂,并且在上皮癌中频繁灭活Par6G基因的证据。这些发现表明,上皮结构的决定因素通过保守的和与癌症相关的调节回路调节细胞增殖活性,这对于限制上皮细胞周期很重要,并且可能为治疗干预提供新的靶点。

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