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Ciliogenesis and Hedgehog signalling are suppressed downstream of KRAS during acinar-ductal metaplasia in mouse

机译:在小鼠的丙氨酸导管元平期间,Ciliogenesis和Hedgehog信号传导在KRA的下游抑制

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Pancreatic ductal adenocarcinoma (PDAC) is the third leading cause of cancer related deaths worldwide, but has a dismal 5-year survival rate of only 7% primarily due to late diagnosis and ineffective therapies. To treat or even prevent PDAC it is vital we understand the initiating events that lead to tumour onset.PDAC develops from preneoplastic lesions, most commonly pancreatic intraepithelial neoplasias (PanIN) driven by constitutive activation of KRas. In patients PanIN are associated with regions of acinar-ductal metaplasia (ADM), where in response to inflammation acini dedifferentiate to a pancreatic progenitor-like fate. In healthy tissue this process is reversible leading to regeneration of the pancreas however in the presence of oncogenic KRas regeneration is blocked and ADM can give rise to PanIN lesions. Here we have used a 3D acinar culture that recapitulates ADM in vitro to explore how KRas prevents regeneration.Regeneration is regulated by Hedgehog (Hh) signalling, which is transduced via the primary cilium. In WT acini, cilia assemble upon ADM and Hh target gene expression is upregulated however ciliogenesis and Hh signaling is suppressed during ADM in cells expressing oncogenic KRas. We show that ciliogenesis fails due to ectopic activation of the cilium disassembly pathway, which is mediated by AurkA, a direct transcriptional target of KRas. Inhibition of AurkA is able to rescue primary cilia and restore Hh signalling. We suggest this could be used as a mechanism to prevent the formation of early lesions and thereby prevent progression to PDAC.? 2020. Published by The Company of Biologists Ltd.
机译:胰腺导管腺癌(PDAC)是全世界癌症相关死亡的第三个主要原因,但令人沮丧的5年生存率仅为7%,主要是由于延迟诊断和无效疗法。治疗或甚至预防PDAC至关重要的是,我们了解导致肿瘤onset.pdac的启动事件从肺塑料病变,最常见的胰腺上皮内瘤瘤(PANIN)由KRA的组成型活化驱动。在患者中,PANIN与癌症 - 导管元(ADM)的区域有关,其中响应炎症ACININICEDEDEDED胰腺祖先的命运。在健康组织中,该方法可逆导致胰腺再生,然而在致癌的KRA再生存在下被阻断并导致胰腺病变。在这里,我们使用了一种3D丙氨酸培养,其概括了ADM在体外探索KRAS如何阻止再生。通过刺猬(HH)信号调节,通过初级纤毛转导。在WT Acini中,纤毛组合在ADM和HH靶基因表达上,但是在表达致癌kRas的细胞中抑制了纤氯和HH信号。我们表明,由于番荔枝型途径的异位活化,纤氯失效,这是由Aurka介导的KRA的直接转录靶标。抑制Aurka能够拯救原发性纤毛和恢复HH信号传导。我们建议这可以用作防止形成早期病变的机制,从而防止进展到PDAC。? 2020年。由Biologury Ltd.公司发布

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