Literature DB >> 35230915

The FACT complex facilitates expression of lysosomal and antioxidant genes through binding to TFEB and TFE3.

Eutteum Jeong1, José A Martina1, Pablo S Contreras1, Juhyung Lee2, Rosa Puertollano1.   

Abstract

TFEB (transcription factor EB) and TFE3 (transcription factor binding to IGHM enhancer 3) orchestrate the cellular response to a variety of stressors, including nutrient deprivation, oxidative stress and pathogens. Here we describe a novel interaction of TFEB and TFE3 with the FAcilitates Chromatin Transcription (FACT) complex, a heterodimeric histone chaperone consisting of SSRP1 and SUPT16H that mediates nucleosome disassembly and assembly, thus facilitating transcription. Extracellular stimuli, such as nutrient deprivation or oxidative stress, induce nuclear translocation and activation of TFEB and TFE3, which then associate with the FACT complex to regulate stress-induced gene transcription. Depletion of FACT does not affect TFEB activation, stability, or binding to the promoter of target genes. In contrast, reduction of FACT levels by siRNA or treatment with the FACT inhibitor curaxin, severely impairs induction of numerous antioxidant and lysosomal genes, revealing a crucial role of FACT as a regulator of cellular homeostasis. Furthermore, upregulation of antioxidant genes induced by TFEB over-expression is significantly reduced by curaxin, consistent with a role of FACT as a TFEB transcriptional activator. Together, our data show that chromatin remodeling at the promoter of stress-responsive genes by FACT is important for efficient expression of TFEB and TFE3 targets, thus providing a link between environmental changes, chromatin modifications and transcriptional regulation.Abbreviations: ADNP2, ADNP homeobox 2; ATP6V0D1, ATPase H+ transporting V0 subunit d1; ATP6V1A, ATPase H+ transporting V1 subunit A; ATP6V1C1, ATPase H+ transporting V1 subunit C1; CSNK2/CK2, casein kinase 2; CLCN7, chloride voltage-gated channel 7; CTSD, cathepsin D; CTSZ, cathepsin Z; EBSS, earle's balanced salt solution; FACT complex, facilitates chromatin transcription complex; FOXO3, forkhead box O3; HEXA, hexosaminidase subunit alpha; HIF1A, hypoxia inducible factor 1 subunit alpha; HMOX1, heme oxygenase 1; LAMP1, lysosomal associated membrane protein 1; MAFF, MAF bZIP transcription factor F; MAFG, MAF bZIP transcription factor G; MCOLN1, mucolipin TRP cation channel 1; MTORC1, mechanistic target of rapamycin kinase complex 1; NaAsO2, sodium arsenite; POLR2, RNA polymerase II; PPARGC1A, PPARG coactivator 1 alpha; PYROXD1, pyridine nucleotide-disulfide oxidoreductase domain 1; RRAGC, Ras related GTP binding C; SEC13, SEC13 homolog, nuclear pore and COPII coat complex component; SLC38A9, solute carrier family 38 member 9; SSRP1, structure specific recognition protein 1; SUPT16H, SPT16 homolog, facilitates chromatin remodeling subunit; TFEB, transcription factor EB; TFE3, transcription factor binding to IGHM enhancer 3; TXNRD1, thioredoxin reductase 1; UVRAG, UV radiation resistance associated; WDR59, WD repeat domain 59.

Entities:  

Keywords:  Autophagy; FACT; TFE3; TFEB; chaperone; histone; lysosomes

Mesh:

Substances:

Year:  2022        PMID: 35230915      PMCID: PMC9542721          DOI: 10.1080/15548627.2022.2029671

Source DB:  PubMed          Journal:  Autophagy        ISSN: 1554-8627            Impact factor:   13.391


  56 in total

1.  STUB1 regulates TFEB-induced autophagy-lysosome pathway.

Authors:  Youbao Sha; Lang Rao; Carmine Settembre; Andrea Ballabio; N Tony Eissa
Journal:  EMBO J       Date:  2017-07-28       Impact factor: 11.598

2.  Protein kinase C controls lysosome biogenesis independently of mTORC1.

Authors:  Yang Li; Meng Xu; Xiao Ding; Chen Yan; Zhiqin Song; Lianwan Chen; Xiahe Huang; Xin Wang; Youli Jian; Guihua Tang; Changyong Tang; Yingtong Di; Shuzhen Mu; Xuezhao Liu; Kai Liu; Ting Li; Yingchun Wang; Long Miao; Weixiang Guo; Xiaojiang Hao; Chonglin Yang
Journal:  Nat Cell Biol       Date:  2016-09-12       Impact factor: 28.824

3.  Domain organization of the yeast histone chaperone FACT: the conserved N-terminal domain of FACT subunit Spt16 mediates recovery from replication stress.

Authors:  Allyson F O'Donnell; Neil K Brewster; Joelius Kurniawan; Laura V Minard; Gerald C Johnston; Richard A Singer
Journal:  Nucleic Acids Res       Date:  2004-11-01       Impact factor: 16.971

4.  Histone chaperone FACT complex mediates oxidative stress response to promote liver cancer progression.

Authors:  Jialing Shen; Mengnuo Chen; Derek Lee; Cheuk-Ting Law; Lai Wei; Felice Ho-Ching Tsang; Don Wai-Ching Chin; Carol Lai-Hung Cheng; Joyce Man-Fong Lee; Irene Oi-Lin Ng; Carmen Chak-Lui Wong; Chun-Ming Wong
Journal:  Gut       Date:  2019-08-22       Impact factor: 23.059

5.  The transcription factor TFEB links mTORC1 signaling to transcriptional control of lysosome homeostasis.

Authors:  Agnes Roczniak-Ferguson; Constance S Petit; Florian Froehlich; Sharon Qian; Jennifer Ky; Brittany Angarola; Tobias C Walther; Shawn M Ferguson
Journal:  Sci Signal       Date:  2012-06-12       Impact factor: 8.192

6.  FACT and the proteasome promote promoter chromatin disassembly and transcriptional initiation.

Authors:  Monica Ransom; Stephanie K Williams; Mekonnen L Dechassa; Chandrima Das; Jeffrey Linger; Melissa Adkins; Chengwei Liu; Blaine Bartholomew; Jessica K Tyler
Journal:  J Biol Chem       Date:  2009-07-01       Impact factor: 5.157

Review 7.  TFEB and TFE3: Linking Lysosomes to Cellular Adaptation to Stress.

Authors:  Nina Raben; Rosa Puertollano
Journal:  Annu Rev Cell Dev Biol       Date:  2016-06-01       Impact factor: 13.827

8.  AMPK-dependent phosphorylation is required for transcriptional activation of TFEB and TFE3.

Authors:  Mathieu Paquette; Leeanna El-Houjeiri; Linda C Zirden; Pietri Puustinen; Paola Blanchette; Hyeonju Jeong; Kurt Dejgaard; Peter M Siegel; Arnim Pause
Journal:  Autophagy       Date:  2021-03-18       Impact factor: 16.016

9.  A lysosome-to-nucleus signalling mechanism senses and regulates the lysosome via mTOR and TFEB.

Authors:  Carmine Settembre; Roberto Zoncu; Diego L Medina; Francesco Vetrini; Serkan Erdin; SerpilUckac Erdin; Tuong Huynh; Mathieu Ferron; Gerard Karsenty; Michel C Vellard; Valeria Facchinetti; David M Sabatini; Andrea Ballabio
Journal:  EMBO J       Date:  2012-02-17       Impact factor: 11.598

10.  DAF-16/FOXO and HLH-30/TFEB function as combinatorial transcription factors to promote stress resistance and longevity.

Authors:  Xin-Xuan Lin; Ilke Sen; Georges E Janssens; Xin Zhou; Bryan R Fonslow; Daniel Edgar; Nicholas Stroustrup; Peter Swoboda; John R Yates; Gary Ruvkun; Christian G Riedel
Journal:  Nat Commun       Date:  2018-10-23       Impact factor: 14.919

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