Chaperone co-inducer BGP-15 inhibits histone deacetylases and enhances the heat shock response through increased chromatin accessibility

被引:0
|
作者
Marek A. Budzyński
Tim Crul
Samu V. Himanen
Noemi Toth
Ferenc Otvos
Lea Sistonen
Laszlo Vigh
机构
[1] Åbo Akademi University,Faculty of Science and Engineering, Cell Biology
[2] Åbo Akademi University and University of Turku,Turku Centre for Biotechnology
[3] Biological Research Centre of the Hungarian Academy of Sciences,undefined
来源
关键词
Heat shock factor protein 1 (HSF1); Histone deacetylase (HDAC); Stress response; Transcription; TSA; VPA;
D O I
暂无
中图分类号
学科分类号
摘要
Defects in cellular protein homeostasis are associated with many severe and prevalent pathological conditions such as neurodegenerative diseases, muscle dystrophies, and metabolic disorders. One way to counteract these defects is to improve the protein homeostasis capacity through induction of the heat shock response. Despite numerous attempts to develop strategies for chemical activation of the heat shock response by heat shock transcription factor 1 (HSF1), the underlying mechanisms of drug candidates’ mode of action are poorly understood. To lower the threshold for the heat shock response activation, we used the chaperone co-inducer BGP-15 that was previously shown to have beneficial effects on several proteinopathic disease models. We found that BGP-15 treatment combined with heat stress caused a substantial increase in HSF1-dependent heat shock protein 70 (HSPA1A/B) expression already at a febrile range of temperatures. Moreover, BGP-15 alone inhibited the activity of histone deacetylases (HDACs), thereby increasing chromatin accessibility at multiple genomic loci including the stress-inducible HSPA1A. Intriguingly, treatment with well-known potent HDAC inhibitors trichostatin A and valproic acid enhanced the heat shock response and improved cytoprotection. These results present a new pharmacological strategy for restoring protein homeostasis by inhibiting HDACs, increasing chromatin accessibility, and lowering the threshold for heat shock response activation.
引用
收藏
页码:717 / 728
页数:11
相关论文
共 4 条
  • [1] Chaperone co-inducer BGP-15 inhibits histone deacetylases and enhances the heat shock response through increased chromatin accessibility
    Budzyanski, Marek A.
    Crul, Tim
    Himanen, Samu V.
    Toth, Noemi
    Otvos, Ferenc
    Sistonen, Lea
    Vigh, Laszlo
    CELL STRESS & CHAPERONES, 2017, 22 (05): : 717 - 728
  • [2] The chaperone co-inducer BGP-15 alleviates ventilation-induced diaphragm dysfunction
    Salah, Heba
    Li, Meishan
    Cacciani, Nicola
    Gastaldello, Stefano
    Ogilvie, Hannah
    Akkad, Hazem
    Namuduri, Arvind Venkat
    Morbidoni, Valeria
    Artemenko, Konstantin A.
    Balogh, Gabor
    Martinez-Redondo, Vicente
    Jannig, Paulo
    Hedstrom, Yvette
    Dworkin, Barry
    Bergquist, Jonas
    Ruas, Jorge
    Vigh, Laszlo
    Salviati, Leonardo
    Larsson, Lars
    SCIENCE TRANSLATIONAL MEDICINE, 2016, 8 (350) : 350ra103
  • [3] Chaperone co-inducer BGP-15 mitigates early contractile dysfunction of the soleus muscle in a rat ICU model
    Cacciani, Nicola
    Salah, Heba
    Li, Meishan
    Akkad, Hazem
    Backeus, Anders
    Hedstrom, Yvette
    Jena, Bhanu P.
    Bergquist, Jonas
    Larsson, Lars
    ACTA PHYSIOLOGICA, 2020, 229 (01)
  • [4] Single fibre cytoarchitecture in ventilator-induced diaphragm dysfunction (VIDD) assessed by quantitative morphometry second harmonic generation imaging: Positive effects of BGP-15 chaperone co-inducer and VBP-15 dissociative corticosteroid treatment
    Mnuskina, Sofia
    Bauer, Julian
    Wirth-Huecking, Anette
    Schneidereit, Dominik
    Nuebler, Stefanie
    Ritter, Paul
    Cacciani, Nicola
    Li, Meishan
    Larsson, Lars
    Friedrich, Oliver
    FRONTIERS IN PHYSIOLOGY, 2023, 14