Literature DB >> 28445726

Sirtuin-1 Activation Controls Tumor Growth by Impeding Th17 Differentiation via STAT3 Deacetylation.

Emeric Limagne1, Marion Thibaudin2, Romain Euvrard2, Hélène Berger2, Pauline Chalons2, Frédérique Végan3, Etienne Humblin2, Romain Boidot3, Cédric Rébé3, Valentin Derangère3, Sylvain Ladoire4, Lionel Apetoh5, Dominique Delmas2, François Ghiringhelli6.   

Abstract

Sirtuin-1 deacetylates proteins and has emerged as a critical regulator of different cellular processes, particularly inflammation. Basal SIRT1 activity was previously found to limit Th9 and enhance Th17 differentiation in mice, but the effect of pharmacological SIRT1 activation on T cell differentiation and antitumor responses remains unclear. Here, we find that SIRT1 pharmacological agonists selectively impede mouse and human Th17 cell differentiation. SIRT1 activation induces STAT3 deacetylation, thus reducing its ability to translocate into the nucleus, bind to Rorc promoter, and induce its transcription. SIRT1 agonists reduce tumor growth in mice by blocking Th17 cell differentiation. In cancer patients, the SIRT1 agonist metformin reduced the frequency of Th17 cells and STAT3 acetylation levels. Altogether, these data underscore that SIRT1 activation impedes Th17 cell differentiation and thereby limits tumor growth and suggest that SIRT1 activators may directly target IL-17A functions.
Copyright © 2017 The Author(s). Published by Elsevier Inc. All rights reserved.

Entities:  

Keywords:  RORγt; SIRT1; STAT3; Th17; cancer

Mesh:

Substances:

Year:  2017        PMID: 28445726     DOI: 10.1016/j.celrep.2017.04.004

Source DB:  PubMed          Journal:  Cell Rep            Impact factor:   9.423


  45 in total

1.  Histone Deacetylase SIRT1 Targets Plk2 to Regulate Centriole Duplication.

Authors:  Hongbo Ling; Lirong Peng; Jianbo Wang; Raneen Rahhal; Edward Seto
Journal:  Cell Rep       Date:  2018-12-04       Impact factor: 9.423

2.  Unexpected implications of STAT3 acetylation revealed by genetic encoding of acetyl-lysine.

Authors:  Yael Belo; Zachery Mielko; Hila Nudelman; Ariel Afek; Oshrit Ben-David; Anat Shahar; Raz Zarivach; Raluca Gordan; Eyal Arbely
Journal:  Biochim Biophys Acta Gen Subj       Date:  2019-06-03       Impact factor: 3.770

3.  The sirtuin family in cancer.

Authors:  Luis Filipe Costa-Machado; Pablo J Fernandez-Marcos
Journal:  Cell Cycle       Date:  2019-07-25       Impact factor: 4.534

4.  SIRT1 regulates cardiomyocyte alignment during maturation.

Authors:  Yi Fang; Wei Fan; Xiaojiang Xu; Agnes K Janoshazi; David C Fargo; Xiaoling Li
Journal:  J Cell Sci       Date:  2022-04-01       Impact factor: 5.285

5.  Rhinovirus-Induced SIRT-1 via TLR2 Regulates Subsequent Type I and Type III IFN Responses in Airway Epithelial Cells.

Authors:  Nathaniel Xander; Hymavathi Reddy Vari; Rewees Eskandar; Wuyan Li; Sudhir Bolla; Nathaniel Marchetti; Umadevi S Sajjan
Journal:  J Immunol       Date:  2019-09-23       Impact factor: 5.422

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Journal:  Metabolomics       Date:  2019-10-05       Impact factor: 4.290

Review 7.  (Inverse) Agonists of Retinoic Acid-Related Orphan Receptor γ: Regulation of Immune Responses, Inflammation, and Autoimmune Disease.

Authors:  Anton M Jetten; Donald N Cook
Journal:  Annu Rev Pharmacol Toxicol       Date:  2019-08-06       Impact factor: 13.820

Review 8.  Evolving Interplay Between Dietary Polyphenols and Gut Microbiota-An Emerging Importance in Healthcare.

Authors:  Suman Kumar Ray; Sukhes Mukherjee
Journal:  Front Nutr       Date:  2021-05-24

Review 9.  The Role of Sirtuin-1 in Immune Response and Systemic Lupus Erythematosus.

Authors:  Yueqi Qiu; Xingyu Zhou; Yu Liu; Siqi Tan; Yaping Li
Journal:  Front Immunol       Date:  2021-04-26       Impact factor: 7.561

10.  Metformin Reverses Hashimoto's Thyroiditis by Regulating Key Immune Events.

Authors:  Xi Jia; Tianyu Zhai; Chunjie Qu; Jianjun Ye; Jing Zhao; Xuerong Liu; Jin-An Zhang; Qiaohui Qian
Journal:  Front Cell Dev Biol       Date:  2021-05-28
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