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首页> 外文期刊>American Journal of Pathology: Official Publication of the American Association of Pathologists >Oxidative stress induced by inactivation of TP53INP1 cooperates with KrasG12D to initiate and promote pancreatic carcinogenesis in the murine pancreas
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Oxidative stress induced by inactivation of TP53INP1 cooperates with KrasG12D to initiate and promote pancreatic carcinogenesis in the murine pancreas

机译:TP53INP1失活诱导的氧化应激与KrasG12D共同启动和促进小鼠胰腺胰腺癌发生

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Tumor protein p53-induced nuclear protein 1 (TP53INP1) is involved in cell stress response. Its expression is lost at the pancreatic intraepithelial neoplasia 1b (PanIN1b)/PanIN2 stage of pancreatic carcinogenesis. Our objective was to determine whether TP53INP1 loss of expression contributes to pancreatic cancer formation in a conditional KrasG12D mouse model. We generated Kras-INP1KO mice using LSL-KrasG12D/+;Pdx1-Cre+/- mice (Kras mice) and TP53INP1-/- mice. Analysis of pancreases during ageing shows that in the presence of activated Kras, TP53INP1 loss of expression accelerated PanIN formation and increased pancreatic injury and the number of high-grade lesions as compared with what occurs in Kras mice. Moreover, cystic lesions resembling intraductal papillary mucinous neoplasm (IPMN) were observed as early as 2 months of age. Remarkably, TP53INP1 is down-regulated in human IPMN. Activation of the small GTPase Rac1 shows that more oxidative stress is generated in Kras-INP1KO than in Kras mice pancreas despite elevated levels of the Nrf2 antioxidant regulator. We firmly establish the link between Kras-INP1KO pancreatic phenotype and oxidative stress with rescue of the phenotype by the antioxidant action of N-acetylcysteine. Our data provide in vivo functional demonstration that TP53INP1 deficiency accelerates progression of pancreatic cancer, underlining its role in the occurrence of IPMN and highlighting the importance of TP53INP1 in the control of oxidative status during development of pancreatic cancer.
机译:肿瘤蛋白p53诱导的核蛋白1(TP53INP1)参与细胞应激反应。在胰腺癌发生的胰腺上皮内瘤变1​​b(PanIN1b)/ PanIN2期,其表达消失。我们的目标是确定在条件性KrasG12D小鼠模型中TP53INP1表达的缺失是否有助于胰腺癌的形成。我们使用LSL-KrasG12D / +; Pdx1-Cre +/-小鼠(Kras小鼠)和TP53INP1-/-小鼠生成了Kras-INP1KO小鼠。对衰老过程中胰腺的分析表明,与Kras小鼠相比,在存在激活的Kras的情况下,TP53INP1表达的缺失加速了PanIN的形成,并增加了胰腺损伤和高级病变的数量。此外,最早在2个月大时就观察到类似于导管内乳头状粘液性肿瘤(IPMN)的囊性病变。值得注意的是,TP53INP1在人类IPMN中被下调。较小的GTPase Rac1的激活显示,尽管Nrf2抗氧化剂调节剂水平升高,但Kras-INP1KO中产生的氧化应激比Kras小鼠胰腺中的氧化应激更大。我们通过N-乙酰半胱氨酸的抗氧化作用牢固地建立了Kras-INP1KO胰腺表型与氧化应激之间的联系。我们的数据提供了体内功能性证明,TP53INP1缺乏会加速胰腺癌的进展,突显其在IPMN发生中的作用,并强调TP53INP1在胰腺癌发展过程中控制氧化状态的重要性。

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