Literature DB >> 25579745

Proinsulin misfolding and endoplasmic reticulum stress during the development and progression of diabetes.

Jinhong Sun1, Jingqiu Cui2, Qing He2, Zheng Chen3, Peter Arvan4, Ming Liu5.   

Abstract

To maintain copious insulin granule stores in the face of ongoing metabolic demand, pancreatic beta cells must produce large quantities of proinsulin, the insulin precursor. Proinsulin biosynthesis can account for up to 30-50% of total cellular protein synthesis of beta cells. This puts pressure on the beta cell secretory pathway, especially the endoplasmic reticulum (ER), where proinsulin undergoes its initial folding, including the formation of three evolutionarily conserved disulfide bonds. In normal beta cells, up to 20% of newly synthesized proinsulin may fail to reach its native conformation, suggesting that proinsulin is a misfolding-prone protein. Misfolded proinsulin molecules can either be refolded to their native structure or degraded through ER associated degradation (ERAD) and autophagy. These degraded molecules decrease proinsulin yield but do not otherwise compromise beta cell function. However, under certain pathological conditions, proinsulin misfolding increases, exceeding the genetically determined threshold of beta cells to handle the misfolded protein load. This results in accumulation of misfolded proinsulin in the ER - a causal factor leading to beta cell failure and diabetes. In patients with Mutant INS-gene induced diabetes of Youth (MIDY), increased proinsulin misfolding due to insulin gene mutations is the primary defect operating as a "first hit" to beta cells. Additionally, increased proinsulin misfolding can be secondary to an unfavorable ER folding environment due to genetic and/or environmental factors. Under these conditions, increased wild-type proinsulin misfolding becomes a "second hit" to the ER and beta cells, aggravating beta cell failure and diabetes. In this article, we describe our current understanding of the normal proinsulin folding pathway in the ER, and then review existing links between proinsulin misfolding, ER dysfunction, and beta cell failure in the development and progression of type 2, type 1, and some monogenic forms of diabetes.
Copyright © 2015 Elsevier Ltd. All rights reserved.

Entities:  

Keywords:  Beta cell; Diabetes; Endoplasmic reticulum stress; Insulin biosynthesis; Proinsulin folding and misfolding

Mesh:

Substances:

Year:  2015        PMID: 25579745      PMCID: PMC4404191          DOI: 10.1016/j.mam.2015.01.001

Source DB:  PubMed          Journal:  Mol Aspects Med        ISSN: 0098-2997


  172 in total

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  59 in total

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Journal:  Dev Cell       Date:  2020-04-30       Impact factor: 12.270

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Authors:  Jessica L Dunne; Sarah J Richardson; Mark A Atkinson; Maria E Craig; Knut Dahl-Jørgensen; Malin Flodström-Tullberg; Heikki Hyöty; Richard E Lloyd; Noel G Morgan; Alberto Pugliese
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Review 5.  Endoplasmic reticulum stress as the basis of obesity and metabolic diseases: focus on adipose tissue, liver, and pancreas.

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6.  Role of Proinsulin Self-Association in Mutant INS Gene-Induced Diabetes of Youth.

Authors:  Jinhong Sun; Yi Xiong; Xin Li; Leena Haataja; Wei Chen; Saiful A Mir; Li Lv; Rachel Madley; Dennis Larkin; Arfah Anjum; Balamurugan Dhayalan; Nischay Rege; Nalinda P Wickramasinghe; Michael A Weiss; Pamela Itkin-Ansari; Randal J Kaufman; David A Ostrov; Peter Arvan; Ming Liu
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Review 7.  A thing of beauty: Structure and function of insulin's "aromatic triplet".

Authors:  Michael A Weiss; Michael C Lawrence
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8.  Defective endoplasmic reticulum export causes proinsulin misfolding in pancreatic β cells.

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Journal:  Ann N Y Acad Sci       Date:  2018-01-28       Impact factor: 5.691

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