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Matrix metalloproteinase 7 controls pancreatic acinar cell transdifferentiation by activating the Notch signaling pathway

机译:基质金属蛋白酶7通过激活Notch信号通路来控制胰腺腺泡细胞转分化

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摘要

Acinar-to-ductal metaplasia in the pancreas is associated with an increased risk for tumorigenesis. Molecular dissection of this process in vitro has shown that primary acinar cells, in response to EGF receptor ligands, can transdifferentiate into duct-like epithelia, passing through a nestin-positive intermediate, in a Notch pathway-dependent manner. Here, we show that in vitro acinar transdifferentiation depends on matrix metalloproteinase 7 (MMP-7), a proteinase expressed in most metaplastic epithelia in vivo. MMP-7 was found to be required for Notch activation, which leads to dedifferentiation of acinar cells to the nestin-positive transitional cell. Besides being necessary for acinar transdifferentiation, it was found that MMP-7 activity was sufficient to induce the process, indicating that molecular signals capable of initiating MMP-7 expression also have the potential to induce formation of metaplastic epithelia in the pancreas.
机译:胰腺由腺泡到导管的化生与肿瘤发生的风险增加有关。体外该过程的分子解剖表明,对EGF受体配体的反应,初级腺泡细胞可以以Notch途径依赖性的方式通过Nestin阳性中间体,分化为导管样上皮细胞。在这里,我们显示体外腺泡转分化依赖于基质金属蛋白酶7(MMP-7),一种在体内大多数代谢上皮中表达的蛋白酶。已发现,Notch激活需要MMP-7,这会导致腺泡细胞向Nestin阳性过渡细胞去分化。除了是腺泡转分化所必需的,还发现MMP-7活性足以诱导该过程,表明能够启动MMP-7表达的分子信号也具有诱导胰腺上皮上皮形成的潜力。

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