TY - JOUR
T1 - Chaperone co-inducer BGP-15 inhibits histone deacetylases and enhances the heat shock response through increased chromatin accessibility
AU - Budzyński, Marek A
AU - Crul, Tim
AU - Himanen, Samu V
AU - Toth, Noemi
AU - Otvos, Ferenc
AU - Sistonen, Lea
AU - Vigh, Laszlo
PY - 2017/9
Y1 - 2017/9
N2 - 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.
AB - 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.
KW - Animals
KW - Carrier Proteins/metabolism
KW - Cell Line
KW - Cell Survival/drug effects
KW - Chromatin/metabolism
KW - Chromatin Immunoprecipitation
KW - Co-Repressor Proteins
KW - HSP40 Heat-Shock Proteins/chemistry
KW - HSP70 Heat-Shock Proteins/chemistry
KW - Heat Shock Transcription Factors/genetics
KW - Heat-Shock Response/drug effects
KW - Histone Deacetylase Inhibitors/pharmacology
KW - Histone Deacetylases/chemistry
KW - Intracellular Signaling Peptides and Proteins/metabolism
KW - Mice
KW - Molecular Chaperones
KW - Nuclear Proteins/metabolism
KW - Oximes/pharmacology
KW - Piperidines/pharmacology
KW - Protein Binding
KW - Receptor, Notch4/metabolism
U2 - 10.1007/s12192-017-0798-5
DO - 10.1007/s12192-017-0798-5
M3 - Article
C2 - 28474205
SN - 1355-8145
VL - 22
SP - 717
EP - 728
JO - Cell Stress and Chaperones
JF - Cell Stress and Chaperones
IS - 5
ER -