Literature DB >> 26858253

Cytokines Regulate β-Cell Thioredoxin-interacting Protein (TXNIP) via Distinct Mechanisms and Pathways.

Kyunghee Hong1, Guanlan Xu1, Truman B Grayson1, Anath Shalev2.   

Abstract

Thioredoxin-interacting protein (TXNIP) is a key regulator of diabetic β-cell apoptosis and dysfunction, and TXNIP inhibition prevents diabetes in mouse models of type 1 and type 2 diabetes. Although we have previously shown that TXNIP is strongly induced by glucose, any regulation by the proinflammatory cytokines tumor necrosis factor α (TNFα), interleukin-1β (IL-1β), and interferon γ (IFNγ) has remained largely unexplored. Moreover, even though this three-cytokine mixture is widely used to mimic type 1 diabetes in vitro, the mechanisms involved are not fully understood. Interestingly, we have now found that this cytokine mixture increases β-cell TXNIP expression; however, although TNFα had no effect, IL-1β surprisingly down-regulated TXNIP transcription, whereas IFNγ increased TXNIP levels in INS-1 β-cells and primary islets. Human TXNIP promoter analyses and chromatin immunoprecipitation studies revealed that the IL-1β effect was mediated by inhibition of carbohydrate response element binding protein activity. In contrast, IFNγ increased pro-apoptotic TXNIP post-transcriptionally via induction of endoplasmic reticulum stress, activation of inositol-requiring enzyme 1α (IRE1α), and suppression of miR-17, a microRNA that targets and down-regulates TXNIP. In fact, miR-17 knockdown was able to mimic the IFNγ effects on TXNIP, whereas miR-17 overexpression blunted the cytokine effect. Thus, our results demonstrate for the first time that the proinflammatory cytokines TNFα, IL-1β, and IFNγ each have distinct and in part opposing effects on β-cell TXNIP expression. These findings thereby provide new mechanistic insight into the regulation of TXNIP and β-cell biology and reveal novel links between proinflammatory cytokines, carbohydrate response element binding protein-mediated transcription, and microRNA signaling.
© 2016 by The American Society for Biochemistry and Molecular Biology, Inc.

Entities:  

Keywords:  TXNIP; beta cell (B-cell); cytokine; microRNA (miRNA); pancreatic islet; type 1 diabetes

Mesh:

Substances:

Year:  2016        PMID: 26858253      PMCID: PMC4861417          DOI: 10.1074/jbc.M115.698365

Source DB:  PubMed          Journal:  J Biol Chem        ISSN: 0021-9258            Impact factor:   5.157


  54 in total

1.  A glucose-responsive transcription factor that regulates carbohydrate metabolism in the liver.

Authors:  H Yamashita; M Takenoshita; M Sakurai; R K Bruick; W J Henzel; W Shillinglaw; D Arnot; K Uyeda
Journal:  Proc Natl Acad Sci U S A       Date:  2001-07-24       Impact factor: 11.205

2.  Gene expression profiling in INS-1 cells overexpressing thioredoxin-interacting protein.

Authors:  Alexandra H Minn; Cynthia A Pise-Masison; Michael Radonovich; John N Brady; Ping Wang; Christina Kendziorski; Anath Shalev
Journal:  Biochem Biophys Res Commun       Date:  2005-10-28       Impact factor: 3.575

3.  Interferon-gamma potentiates endoplasmic reticulum stress-induced death by reducing pancreatic beta cell defence mechanisms.

Authors:  P Pirot; D L Eizirik; A K Cardozo
Journal:  Diabetologia       Date:  2006-04-08       Impact factor: 10.122

4.  Cytokines downregulate the sarcoendoplasmic reticulum pump Ca2+ ATPase 2b and deplete endoplasmic reticulum Ca2+, leading to induction of endoplasmic reticulum stress in pancreatic beta-cells.

Authors:  Alessandra K Cardozo; Fernanda Ortis; Joachim Storling; Ying-Mei Feng; Joanne Rasschaert; Morten Tonnesen; Françoise Van Eylen; Thomas Mandrup-Poulsen; André Herchuelz; Décio L Eizirik
Journal:  Diabetes       Date:  2005-02       Impact factor: 9.461

5.  CHOP induces death by promoting protein synthesis and oxidation in the stressed endoplasmic reticulum.

Authors:  Stefan J Marciniak; Chi Y Yun; Seiichi Oyadomari; Isabel Novoa; Yuhong Zhang; Rivka Jungreis; Kazuhiro Nagata; Heather P Harding; David Ron
Journal:  Genes Dev       Date:  2004-12-15       Impact factor: 11.361

6.  Identification of thioredoxin-binding protein-2/vitamin D(3) up-regulated protein 1 as a negative regulator of thioredoxin function and expression.

Authors:  A Nishiyama; M Matsui; S Iwata; K Hirota; H Masutani; H Nakamura; Y Takagi; H Sono; Y Gon; J Yodoi
Journal:  J Biol Chem       Date:  1999-07-30       Impact factor: 5.157

7.  Visfatin Protects Rat Pancreatic β-cells against IFN-γ-Induced Apoptosis through AMPK and ERK1/2 Signaling Pathways.

Authors:  Ruo Lan Xiang; Mei Mei; Yun Chao Su; Li Li; Jin Yu Wang; Li Ling Wu
Journal:  Biomed Environ Sci       Date:  2015-03       Impact factor: 3.118

8.  Thioredoxin-interacting protein is stimulated by glucose through a carbohydrate response element and induces beta-cell apoptosis.

Authors:  Alexandra H Minn; Christian Hafele; Anath Shalev
Journal:  Endocrinology       Date:  2005-02-10       Impact factor: 4.736

9.  Interleukin-1-receptor antagonist in type 2 diabetes mellitus.

Authors:  Claus M Larsen; Mirjam Faulenbach; Allan Vaag; Aage Vølund; Jan A Ehses; Burkhardt Seifert; Thomas Mandrup-Poulsen; Marc Y Donath
Journal:  N Engl J Med       Date:  2007-04-12       Impact factor: 91.245

10.  ChREBP binding to fatty acid synthase and L-type pyruvate kinase genes is stimulated by glucose in pancreatic beta-cells.

Authors:  Gabriela da Silva Xavier; Guy A Rutter; Frédérique Diraison; Chrysovalantis Andreolas; Isabelle Leclerc
Journal:  J Lipid Res       Date:  2006-08-04       Impact factor: 5.922

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  20 in total

Review 1.  miRNAs: novel regulators of autoimmunity-mediated pancreatic β-cell destruction in type 1 diabetes.

Authors:  Ying Zheng; Zhen Wang; Zhiguang Zhou
Journal:  Cell Mol Immunol       Date:  2017-03-20       Impact factor: 11.530

2.  Temporal Proteomic Analysis of Pancreatic β-Cells in Response to Lipotoxicity and Glucolipotoxicity.

Authors:  Zonghong Li; Hongyang Liu; Zhangjing Niu; Wen Zhong; Miaomiao Xue; Jifeng Wang; Fuquan Yang; Yue Zhou; Yifa Zhou; Tao Xu; Junjie Hou
Journal:  Mol Cell Proteomics       Date:  2018-08-06       Impact factor: 5.911

3.  Visfatin Exerts Immunotherapeutic Effects in Lipopolysaccharide-Induced Acute Lung Injury in Murine Model.

Authors:  You Luo; Xin-Xin Pang; Abdur Rahman Ansari; Xin-Tong Wu; Hui-Zhen Li; Zhe-Wei Zhang; Hui Song
Journal:  Inflammation       Date:  2020-02       Impact factor: 4.092

Review 4.  Diabetes pathogenic mechanisms and potential new therapies based upon a novel target called TXNIP.

Authors:  Lance Thielen; Anath Shalev
Journal:  Curr Opin Endocrinol Diabetes Obes       Date:  2018-04       Impact factor: 3.243

5.  Identification of Effective and Nonpromiscuous Antidiabetic Drug Molecules from Penicillium Species.

Authors:  Shahzad Saleem; Shabana Bibi; Qudsia Yousafi; Tehzeem Hassan; Muhammad Saad Khan; Mohammad Mehedi Hasan; Hitesh Chopra; Mahmoud Moustafa; Mohammed Al-Shehri; Mohammad Khalid; Atul Kabra
Journal:  Evid Based Complement Alternat Med       Date:  2022-06-08       Impact factor: 2.650

6.  Visfatin Regulates Inflammatory Mediators in Mouse Intestinal Mucosa Through Toll-Like Receptors Signaling Under Lipopolysaccharide Stress.

Authors:  Xin Xin Pang; Abdur Rahman Ansari; Wen Jie Yang; Xiao Yu Niu; Ling Dong; Hui Zhen Li; Fen Liang Xu; Zhe Wei Zhang; Ke Xiao; Song Hui
Journal:  Arch Immunol Ther Exp (Warsz)       Date:  2021-04-15       Impact factor: 4.291

Review 7.  MicroRNAs as stress regulators in pancreatic beta cells and diabetes.

Authors:  Mary P LaPierre; Markus Stoffel
Journal:  Mol Metab       Date:  2017-07-18       Impact factor: 7.422

8.  Activation of NLRP3 Inflammasome by Advanced Glycation End Products Promotes Pancreatic Islet Damage.

Authors:  Xiang Kong; Ai-Ling Lu; Xin-Ming Yao; Qiang Hua; Xiao-Yong Li; Li Qin; Hong-Mei Zhang; Guang-Xun Meng; Qing Su
Journal:  Oxid Med Cell Longev       Date:  2017-11-05       Impact factor: 6.543

9.  Role of PPAR-β/δ/miR-17/TXNIP pathway in neuronal apoptosis after neonatal hypoxic-ischemic injury in rats.

Authors:  Marcin Gamdzyk; Desislava Met Doycheva; Jay Malaguit; Budbazar Enkhjargal; Jiping Tang; John H Zhang
Journal:  Neuropharmacology       Date:  2018-08-04       Impact factor: 5.273

10.  Multi-omics profiling reveals microRNA-mediated insulin signaling networks.

Authors:  Yang-Chi-Dung Lin; Hsi-Yuan Huang; Sirjana Shrestha; Chih-Hung Chou; Yen-Hua Chen; Chi-Ru Chen; Hsiao-Chin Hong; Jing Li; Yi-An Chang; Men-Yee Chiew; Ya-Rong Huang; Siang-Jyun Tu; Ting-Hsuan Sun; Shun-Long Weng; Ching-Ping Tseng; Hsien-Da Huang
Journal:  BMC Bioinformatics       Date:  2020-09-17       Impact factor: 3.169

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