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外分泌胰腺功能中的环境和遗传应激源与未折叠蛋白反应——一种假说

Environmental and genetic stressors and the unfolded protein response in exocrine pancreatic function - a hypothesis.

作者信息

Pandol Stephen J, Gorelick Fred S, Lugea Aurelia

机构信息

Department of Veterans Affairs, Southern California Research Center for Alcoholic Liver and Pancreatic Diseases, University of California Los Angeles, CA, USA.

出版信息

Front Physiol. 2011 Mar 10;2:8. doi: 10.3389/fphys.2011.00008. eCollection 2011.

Abstract

The exocrine pancreas has the greatest protein synthetic capacity of any mammalian organ and is challenged with the synthesis, processing and transporting a large load of digestive enzymes. Based on recent findings we present a hypothesis proposing that mutations in the digestive enzymes and environmental risks impacting the pancreas (i.e., alcohol abuse, smoking, metabolic disorders, and drugs) cause endoplasmic reticulum (ER) stress. We review recent findings showing that in normal pancreas the ER stress resulting from alcohol abuse leads to an adaptive unfolded protein response (UPR) allowing for maintenance of protein synthesis, processing, and transport. However, when key pathways necessary for the adaptive UPR are altered, the exocrine cell of the pancreas is unable to maintain these processes and cellular pathology results. These findings may explain why some individuals with alcohol abuse disorders develop organ injury and disease while most do not. Further, the findings allow us to hypothesize that the UPR in the exocrine pancreas adapts the protein synthetic machinery of the ER stress resulting from mutational and environmental stressors. When the ability of the UPR to adapt to the stressors is exceeded, pathologic pathways and disease develop.

摘要

外分泌胰腺具有所有哺乳动物器官中最强的蛋白质合成能力,且面临着合成、加工和运输大量消化酶的挑战。基于最近的研究发现,我们提出一个假说,即消化酶的突变以及影响胰腺的环境风险因素(如酗酒、吸烟、代谢紊乱和药物)会导致内质网(ER)应激。我们回顾了最近的研究发现,这些发现表明,在正常胰腺中,酗酒导致的ER应激会引发适应性未折叠蛋白反应(UPR),从而维持蛋白质的合成、加工和运输。然而,当适应性UPR所需的关键途径发生改变时,胰腺的外分泌细胞就无法维持这些过程,进而导致细胞病变。这些发现或许可以解释为什么一些酗酒者会出现器官损伤和疾病,而大多数人却不会。此外,这些发现使我们能够推测,外分泌胰腺中的UPR会使内质网应激的蛋白质合成机制适应由突变和环境应激源导致的应激。当UPR适应应激源的能力被超越时,就会引发病理途径和疾病。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b59d/3070477/1103bab37801/fphys-02-00008-g001.jpg

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