TY - JOUR
T1 - Phosphorylation of serine 303 is a prerequisite for the stress-inducible SUMO modification of heat shock factor 1
AU - Hietakangas, Ville
AU - Ahlskog, Johanna K
AU - Jakobsson, Annika M
AU - Hellesuo, Maria
AU - Sahlberg, Niko M
AU - Holmberg, Carina I
AU - Mikhailov, Andrey
AU - Palvimo, Jorma J
AU - Pirkkala, Lila
AU - Sistonen, Lea
PY - 2003/4
Y1 - 2003/4
N2 - The heat shock response, which is accompanied by a rapid and robust upregulation of heat shock proteins (Hsps), is a highly conserved protection mechanism against protein-damaging stress. Hsp induction is mainly regulated at transcriptional level by stress-inducible heat shock factor 1 (HSF1). Upon activation, HSF1 trimerizes, binds to DNA, concentrates in the nuclear stress granules, and undergoes a marked multisite phosphorylation, which correlates with its transcriptional activity. In this study, we show that HSF1 is modified by SUMO-1 and SUMO-2 in a stress-inducible manner. Sumoylation is rapidly and transiently enhanced on lysine 298, located in the regulatory domain of HSF1, adjacent to several critical phosphorylation sites. Sumoylation analyses of HSF1 phosphorylation site mutants reveal that specifically the phosphorylation-deficient S303 mutant remains devoid of SUMO modification in vivo and the mutant mimicking phosphorylation of S303 promotes HSF1 sumoylation in vitro, indicating that S303 phosphorylation is required for K298 sumoylation. This finding is further supported by phosphopeptide mapping and analysis with S303/7 phosphospecific antibodies, which demonstrate that serine 303 is a target for strong heat-inducible phosphorylation, corresponding to the inducible HSF1 sumoylation. A transient phosphorylation-dependent colocalization of HSF1 and SUMO-1 in nuclear stress granules provides evidence for a strictly regulated subnuclear interplay between HSF1 and SUMO.
AB - The heat shock response, which is accompanied by a rapid and robust upregulation of heat shock proteins (Hsps), is a highly conserved protection mechanism against protein-damaging stress. Hsp induction is mainly regulated at transcriptional level by stress-inducible heat shock factor 1 (HSF1). Upon activation, HSF1 trimerizes, binds to DNA, concentrates in the nuclear stress granules, and undergoes a marked multisite phosphorylation, which correlates with its transcriptional activity. In this study, we show that HSF1 is modified by SUMO-1 and SUMO-2 in a stress-inducible manner. Sumoylation is rapidly and transiently enhanced on lysine 298, located in the regulatory domain of HSF1, adjacent to several critical phosphorylation sites. Sumoylation analyses of HSF1 phosphorylation site mutants reveal that specifically the phosphorylation-deficient S303 mutant remains devoid of SUMO modification in vivo and the mutant mimicking phosphorylation of S303 promotes HSF1 sumoylation in vitro, indicating that S303 phosphorylation is required for K298 sumoylation. This finding is further supported by phosphopeptide mapping and analysis with S303/7 phosphospecific antibodies, which demonstrate that serine 303 is a target for strong heat-inducible phosphorylation, corresponding to the inducible HSF1 sumoylation. A transient phosphorylation-dependent colocalization of HSF1 and SUMO-1 in nuclear stress granules provides evidence for a strictly regulated subnuclear interplay between HSF1 and SUMO.
KW - Amino Acid Sequence
KW - Binding Sites
KW - Cell Nucleus/metabolism
KW - DNA-Binding Proteins/chemistry
KW - HSP70 Heat-Shock Proteins/genetics
KW - Heat Shock Transcription Factors
KW - Heat-Shock Response
KW - Humans
KW - K562 Cells
KW - Lysine/chemistry
KW - Molecular Sequence Data
KW - Mutagenesis, Site-Directed
KW - Phosphorylation
KW - Protein Processing, Post-Translational
KW - Recombinant Fusion Proteins/genetics
KW - SUMO-1 Protein/genetics
KW - Sequence Homology, Amino Acid
KW - Serine/chemistry
KW - Transcription Factors
KW - Transcription, Genetic
KW - Ubiquitins/genetics
U2 - 10.1128/MCB.23.8.2953-2968.2003
DO - 10.1128/MCB.23.8.2953-2968.2003
M3 - Article
C2 - 12665592
SN - 0270-7306
VL - 23
SP - 2953
EP - 2968
JO - Molecular and Cellular Biology
JF - Molecular and Cellular Biology
IS - 8
ER -