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SIRT3通过去乙酰化和激活糖原合酶激酶3β来阻止小鼠衰老相关的组织纤维化。

SIRT3 Blocks Aging-Associated Tissue Fibrosis in Mice by Deacetylating and Activating Glycogen Synthase Kinase 3β.

作者信息

Sundaresan Nagalingam R, Bindu Samik, Pillai Vinodkumar B, Samant Sadhana, Pan Yong, Huang Jing-Yi, Gupta Madhu, Nagalingam Raghu S, Wolfgeher Donald, Verdin Eric, Gupta Mahesh P

机构信息

Department of Surgery, Biological Science Division, University of Chicago, Chicago, Illinois, USA.

Gladstone Institutes, University of California, San Francisco, San Francisco, California, USA.

出版信息

Mol Cell Biol. 2015 Dec 14;36(5):678-92. doi: 10.1128/MCB.00586-15.


DOI:10.1128/MCB.00586-15
PMID:26667039
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC4760222/
Abstract

Tissue fibrosis is a major cause of organ dysfunction during chronic diseases and aging. A critical step in this process is transforming growth factor β1 (TGF-β1)-mediated transformation of fibroblasts into myofibroblasts, cells capable of synthesizing extracellular matrix. Here, we show that SIRT3 controls transformation of fibroblasts into myofibroblasts via suppressing the profibrotic TGF-β1 signaling. We found that Sirt3 knockout (KO) mice with age develop tissue fibrosis of multiple organs, including heart, liver, kidney, and lungs but not whole-body SIRT3-overexpressing mice. SIRT3 deficiency caused induction of TGF-β1 expression and hyperacetylation of glycogen synthase kinase 3β (GSK3β) at residue K15, which negatively regulated GSK3β activity to phosphorylate the substrates Smad3 and β-catenin. Reduced phosphorylation led to stabilization and activation of these transcription factors regulating expression of the profibrotic genes. SIRT3 deacetylated and activated GSK3β and thereby blocked TGF-β1 signaling and tissue fibrosis. These data reveal a new role of SIRT3 to negatively regulate aging-associated tissue fibrosis and discloses a novel phosphorylation-independent mechanism controlling the catalytic activity of GSK3β.

摘要

组织纤维化是慢性疾病和衰老过程中器官功能障碍的主要原因。这一过程的关键步骤是转化生长因子β1(TGF-β1)介导的成纤维细胞向肌成纤维细胞的转变,肌成纤维细胞是能够合成细胞外基质的细胞。在此,我们表明SIRT3通过抑制促纤维化的TGF-β1信号传导来控制成纤维细胞向肌成纤维细胞的转变。我们发现,随着年龄增长,Sirt3基因敲除(KO)小鼠会出现多个器官的组织纤维化,包括心脏、肝脏、肾脏和肺,但全身SIRT3过表达的小鼠则不会。SIRT3缺乏导致TGF-β1表达的诱导以及糖原合酶激酶3β(GSK3β)在K15位点的超乙酰化,这会负向调节GSK3β磷酸化底物Smad3和β-连环蛋白的活性。磷酸化减少导致这些调节促纤维化基因表达的转录因子的稳定和激活。SIRT3使GSK3β去乙酰化并激活,从而阻断TGF-β1信号传导和组织纤维化。这些数据揭示了SIRT3在负向调节衰老相关组织纤维化方面的新作用,并揭示了一种控制GSK3β催化活性的新型非磷酸化依赖性机制。

相似文献

[1]
SIRT3 Blocks Aging-Associated Tissue Fibrosis in Mice by Deacetylating and Activating Glycogen Synthase Kinase 3β.

Mol Cell Biol. 2015-12-14

[2]
Glycogen synthase kinase-3 inhibition attenuates fibroblast activation and development of fibrosis following renal ischemia-reperfusion in mice.

Dis Model Mech. 2015-8-1

[3]
Sirtuin 6 deficiency transcriptionally up-regulates TGF-β signaling and induces fibrosis in mice.

J Biol Chem. 2020-1-10

[4]
TGF-beta1 targets the GSK-3beta/beta-catenin pathway via ERK activation in the transition of human lung fibroblasts into myofibroblasts.

Pharmacol Res. 2008-4

[5]
Glycogen synthase kinase-3beta negatively regulates TGF-beta1 and Angiotensin II-mediated cellular activity through interaction with Smad3.

Eur J Pharmacol. 2010-6-30

[6]
Requirement for active glycogen synthase kinase-3β in TGF-β1 upregulation of connective tissue growth factor (CCN2/CTGF) levels in human gingival fibroblasts.

Am J Physiol Cell Physiol. 2013-7-3

[7]
SIRT3 blocks myofibroblast differentiation and pulmonary fibrosis by preventing mitochondrial DNA damage.

Am J Physiol Lung Cell Mol Physiol. 2017-1-1

[8]
Notch3 Ameliorates Cardiac Fibrosis After Myocardial Infarction by Inhibiting the TGF-β1/Smad3 Pathway.

Cardiovasc Toxicol. 2016-10

[9]
Induction of renal fibrotic genes by TGF-β1 requires EGFR activation, p53 and reactive oxygen species.

Cell Signal. 2013-7-18

[10]
Glycogen synthase kinase-3 (GSK-3) regulates TGF-β₁-induced differentiation of pulmonary fibroblasts.

Br J Pharmacol. 2013-6

引用本文的文献

[1]
NR4A1 Acts as a Nutrient Sensor That Inhibits the Effects of Aging.

Nutrients. 2025-8-21

[2]
HDACs and Their Inhibitors on Post-Translational Modifications: The Regulation of Cardiovascular Disease.

Cells. 2025-7-20

[3]
Contribution of histone deacetylases (HDACs) to the regulation of histone and non-histone proteins: implications for fibrotic diseases.

BMB Rep. 2025-7-10

[4]
Mitochondrial Calcium Uniporter-Mediated Regulation of the SIRT3/GSK3β/β-Catenin Signaling Pathway in Vascular Remodeling.

FASEB J. 2025-7-15

[5]
Glycogen synthase kinase 3β: a key player in progressive chronic kidney disease.

Clin Sci (Lond). 2025-6-17

[6]
Natural Bioproducts with Epigenetic Properties for Treating Cardiovascular Disorders.

Genes (Basel). 2025-5-10

[7]
Emerging Epigenetic Therapies for the Treatment of Cardiac Fibrosis.

Biomedicines. 2025-5-11

[8]
SIRT3/6/7: promising therapeutic targets for pulmonary fibrosis.

Front Cell Dev Biol. 2025-4-2

[9]
Sirtuins in kidney homeostasis and disease: where are we now?

Front Endocrinol (Lausanne). 2025-1-22

[10]
Protective Effects of SIRT2 Inhibition on Cardiac Fibrosis.

Anatol J Cardiol. 2025-1-31

本文引用的文献

[1]
Activation of SIRT3 by the NAD⁺ precursor nicotinamide riboside protects from noise-induced hearing loss.

Cell Metab. 2014-12-2

[2]
Translocation of glycogen synthase kinase-3β (GSK-3β), a trigger of permeability transition, is kinase activity-dependent and mediated by interaction with voltage-dependent anion channel 2 (VDAC2).

J Biol Chem. 2014-10-17

[3]
Sirt1 activation ameliorates renal fibrosis by inhibiting the TGF-β/Smad3 pathway.

J Cell Biochem. 2014-5

[4]
SIRT3 deacetylates and activates OPA1 to regulate mitochondrial dynamics during stress.

Mol Cell Biol. 2013-12-16

[5]
Sirt1 extends life span and delays aging in mice through the regulation of Nk2 homeobox 1 in the DMH and LH.

Cell Metab. 2013-9-3

[6]
Regulation of MnSOD enzymatic activity by Sirt3 connects the mitochondrial acetylome signaling networks to aging and carcinogenesis.

Antioxid Redox Signal. 2014-4-1

[7]
Inhalation treatment with glutathione in patients with cystic fibrosis. A randomized clinical trial.

Am J Respir Crit Care Med. 2013-7-1

[8]
SIRT1 suppresses the epithelial-to-mesenchymal transition in cancer metastasis and organ fibrosis.

Cell Rep. 2013-4-11

[9]
25-hydroxycholesterol promotes fibroblast-mediated tissue remodeling through NF-κB dependent pathway.

Exp Cell Res. 2013-2-26

[10]
GSK-3 and mitochondria in cancer cells.

Front Oncol. 2013-2-5

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