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首页> 外文期刊>Gastroenterology >NFATc1 Links EGFR Signaling to Induction of Sox9 Transcription and Acinar-Ductal Transdifferentiation in the Pancreas
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NFATc1 Links EGFR Signaling to Induction of Sox9 Transcription and Acinar-Ductal Transdifferentiation in the Pancreas

机译:NFATC1将EGFR信号传导与胰腺中SOX9转录和癌症导管转染的诱导

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摘要

BACKGROUND & AIMS: Oncogenic mutations in KRAS contribute to the development of pancreatic ductal adenocarcinoma, but are not sufficient to initiate carcinogenesis. Secondary events, such as inflammation-induced signaling via the epidermal growth factor receptor (EGFR) and expression of the SOX9 gene, are required for tumor formation. Herein we sought to identify the mechanisms that link EGFR signaling with activation of SOX9 during acinar-ductal metaplasia, a transdifferentiation process that precedes pancreatic carcinogenesis. METHODS: We analyzed pancreatic tissues from KrasG12D; pdx1-Cre and KrasG12D; NFATc1D/D; pdx1-Cre mice after intraperitoneal administration of caerulein, vs cyclosporin A or dimethyl sulfoxide (controls). Induction of EGFR signaling and its effects on the expression of Nuclear factor of activated T cells c1 (NFATc1) or SOX9 were investigated by quantitative reverse-transcription polymerase chain reaction, immunoblot, and immunohistochemical analyses of mouse and human tissues and acinar cell explants. Interactions between NFATc1 and partner proteins and effects on DNA binding or chromatin modifications were studied using co-immunoprecipitation and chromatin immunoprecipitation assays in acinar cell explants and mouse tissue. RESULTS: EGFR activation induced expression of NFATc1 in metaplastic areas from patients with chronic pancreatitis and in pancreatic tissue from KrasG12D mice. EGFR signaling also promoted formation of a complex between NFATc1 and C-JUN in dedifferentiating mouse acinar cells, leading to activation of Sox9 transcription and induction of acinar-ductal metaplasia. Pharmacologic inhibition of NFATc1 or disruption of the Nfatc1 gene inhibited EGFR-mediated induction of Sox9 transcription and blocked acinar-ductal transdifferentiation and pancreatic cancer initiation in mice. CONCLUSIONS: EGFR signaling induces expression of NFATc1 and Sox9, leading to acinar cell transdifferentiation and initiation of pancreatic cancer. Strategies designed to disrupt this pathway might be developed to prevent pancreatic cancer initiation in high-risk patients with chronic pancreatitis.
机译:背景和目的:KRA中的致癌突变有助于开发胰腺导管腺癌,但不足以启动致癌作用。肿瘤形成需要通过表皮生长因子受体(EGFR)和SOX9基因表达的次要事件,例如通过表皮生长因子受体(EGFR)和SOX9基因的表达。在此,我们寻求鉴定在母癌 - 导管元化期间将EGFR信号传导与SOX9的激活联系起来的机制,该方法是胰腺癌前后的转染过程。方法:从KRASG12D分析胰腺组织; PDX1-CRE和KRASG12D; nfatc1d / d;在腹腔内施用Caerulein后的PDX1-CRE小鼠,VS环孢菌素A或二甲基亚砜(对照)。通过定量的逆转录聚合酶链反应,免疫印迹和免疫组织化学分析,研究了EGFR信号传导的EGFR信号传导及其对活性T细胞C1(NFATC1)或SOX9的核因子的表达的影响。使用丙氨酸细胞外植物和小鼠组织中的共免疫沉淀和染色质免疫沉淀测定,研究了NFATC1和合作蛋白之间的相互作用和对DNA结合或染色质修饰的影响。结果:EGFR激活诱导慢性胰腺炎患者和胰腺组织中慢性胰腺炎患者的NFATC1表达。 EGFR信号传导还促进了NFATC1和C-JUM之间的形成复合物,所述小鼠丙氨酸细胞中的SOX9转录和诱导丙氨酸导管元癌的激活。 NFATC1的药理学抑制或NFATC1基因破坏抑制EGFR介导的SOX9转录和抑制小鼠癌癌癌的诱导和胰腺癌引发。结论:EGFR信号传导诱导NFATC1和SOX9的表达,导致胰腺细胞转移和胰腺癌的开始。旨在破坏这条途径的策略可能是为了防止胰腺癌在高危患者患有慢性胰腺炎的患者中。

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