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首页> 外文期刊>Cell death & disease. >Loss of RE-1 silencing transcription factor accelerates exocrine damage from pancreatic injury
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Loss of RE-1 silencing transcription factor accelerates exocrine damage from pancreatic injury

机译:RE-1沉默转录因子的丧失加速了胰腺损伤的外分泌损伤

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Regulation of pancreas plasticity is critical for preventing injury and promoting regeneration upon tissue damage. The intricate process of pancreatic differentiation is governed by an orchestrated network of positive and negative transcription factors for appropriate gene expression. While the transcriptional repressor REST is well characterized as a silencer of neuronal genes in non-neuronal cells, the role of REST in regulating exocrine pancreas cell identity remains largely unexplored. Rest expression is increased upon injury in the mouse pancreas, such as induced acute and chronic pancreatitis and ductal adenocarcinoma. At the cellular level, Rest expression is lower in mature acinar cells compared with pancreas progenitor and ductal cells. To investigate the role of REST activity in pancreatic transdifferentiation and homeostasis, we developed a novel mouse model (Cre/RESTfl/fl) with conditional knockout (KO) of Rest expression within pancreas cells. The high Cre-mediated excision efficiency of Rest exon two KO caused decreased Rest expression and activity within the pancreas. Short-term organoid cultures of pancreatic acini to undergo acinar-to-ductal metaplasia (ADM) showed that loss of REST impedes induced ADM, while overexpression of REST increases ADM. Interestingly, REST ablation accelerated acute pancreatitis in mice treated with the cholecystokinin analog caerulein, as indicated by cellular morphology, elevated serum amylase levels and pancreatic edema. Furthermore, Cre/RESTfl/fl mice were more sensitive to acute pancreatitis injury and displayed augmented tissue damage and cellular lesions. These results suggest REST has a novel protective role against pancreatic tissue damage by acting as a regulator of exocrine cell identity.
机译:对胰腺塑性的调节对于预防伤害和促进组织损伤的再生至关重要。胰腺分化的复杂过程是由适当基因表达的正面和阴性转录因子的策划网络管辖。虽然转录压缩机静止的良好表征为非神经元细胞中神经元基因的消毒剂,但是在调节外分胰腺细胞身份中休息的作用仍然很大程度上是未探斗的。在小鼠胰腺损伤时,静止表达增加,例如诱导急性和慢性胰腺炎和导管腺癌。在细胞水平,与胰腺祖细胞和导管细胞相比,成熟腺体细胞中的休息表达较低。为了探讨休息活动在胰腺转移和稳态中的作用,我们在胰腺细胞内开发了一种新的小鼠模型(CRE / RETFL / FL),其休息表达的条件敲除(KO)。高钙介导的静止外显子的切除效率2kO引起胰腺内的静止表达和活性降低。胰腺癌的短期有机骨培养,进行母动腺癌(ADM)表明,休息阻力诱导诱导ADM,而休息的过度表达增加ADM。有趣的是,用胆囊蛋白酶素类似物Caerulein治疗的小鼠休息加速急性胰腺炎,如细胞形态,血清淀粉酶水平和胰水肿所示。此外,CRE / RESTFL / FL小鼠对急性胰腺炎损伤更敏感,并显示出增强的组织损伤和细胞病变。这些结果表明休息具有对胰腺组织损伤的一种新的保护作用,通过作为外分泌细胞同一性的调节剂。

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