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Basal autophagy maintains pancreatic acinar cell homeostasis and protein synthesis and prevents ER stress

机译:基础自噬维持胰腺腺泡细胞稳态和蛋白质合成,并防止内质网应激

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Pancreatic acinar cells possess very high protein synthetic rates as they need to produce and secrete large amounts of digestive enzymes. Acinar cell damage and dysfunction cause malnutrition and pancreatitis, and inflammation of the exocrine pancreas that promotes development of pancreatic ductal adenocarcinoma (PDAC), a deadly pancreatic neoplasm. The cellular and molecular mechanisms that maintain acinar cell function and whose dysregulation can lead to tissue damage and chronic pancreatitis are poorly understood. It was suggested that autophagy, the principal cellular degradative pathway, is impaired in pancreatitis, but it is unknown whether impaired autophagy is a cause or a consequence of pancreatitis. To address this question, we generated Atg7(Delta pan) mice that lack the essential autophagy-related protein 7 (ATG7) in pancreatic epithelial cells. Atg7(Delta pan) mice exhibit severe acinar cell degeneration, leading to pancreatic inflammation and extensive fibrosis. Whereas ATG7 loss leads to the expected decrease in autophagic flux, it also results in endoplasmic reticulum (ER) stress, accumulation of dysfunctional mitochondria, oxidative stress, activation of AMPK, and a marked decrease in protein synthetic capacity that is accompanied by loss of rough ER. Atg7(Delta pan) mice also exhibit spontaneous activation of regenerative mechanisms that initiate acinar-to-ductal metaplasia (ADM), a process that replaces damaged acinar cells with duct-like structures.
机译:胰腺腺泡细胞具有非常高的蛋白质合成速率,因为它们需要产生和分泌大量的消化酶。腺泡细胞损伤和功能障碍会导致营养不良和胰腺炎,以及胰腺外分泌炎症,从而促进胰腺导管腺癌 (PDAC) 的发展,这是一种致命的胰腺肿瘤。维持腺泡细胞功能的细胞和分子机制及其失调可导致组织损伤和慢性胰腺炎的细胞和分子机制知之甚少。有人认为,自噬是主要的细胞降解途径,在胰腺炎中受损,但尚不清楚自噬受损是胰腺炎的原因还是结果。为了解决这个问题,我们生成了胰腺上皮细胞中缺乏必需自噬相关蛋白 7 (ATG7) 的 Atg7(Delta pan) 小鼠。Atg7(Delta pan)小鼠表现出严重的腺泡细胞变性,导致胰腺炎症和广泛的纤维化。虽然 ATG7 的缺失导致自噬通量的预期降低,但它也会导致内质网 (ER) 应激、功能失调的线粒体积累、氧化应激、AMPK 的激活以及蛋白质合成能力的显着下降,并伴有粗糙的 ER 的损失。 Atg7(Delta pan) 小鼠还表现出启动腺泡导管化生 (ADM) 的再生机制的自发激活, 一种用导管状结构替换受损腺泡细胞的过程。

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