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c-Jun NH2-terminal kinase targeting and phosphorylation of heat shock factor-1 suppress its transcriptional activity
1Institute of Molecular Medicine and Genetics, Gene Regulation Group, Medical College of Georgia, Augusta, Georgia, 30912, USA.
Abstract:
The mammalian heat shock transcription factor HSF-1 regulates the expression of the heat shock proteins, molecular chaperones that are involved in cellular processes from higher order assembly to protein degradation. HSF-1 is a phosphorylated monomer under physiological growth conditions and is located mainly in the cytoplasm. Upon activation by a variety of environmental stresses, HSF-1 is translocated into the nucleus, forms trimers, acquires DNA binding activity, is hyperphosphorylated, appears as punctate granules, and increases transcriptional activity of target genes. As cells recover from stress, the punctate granules gradually disappear, and HSF-1 appears in a diffused staining pattern in the cytoplasm and nucleus. We have previously shown that the mitogen-activated protein kinase ERK phosphorylates and suppresses HSF-1-driven transcription. Here, we show that c-Jun NH(2)-terminal kinase (JNK) also phosphorylates and inactivates HSF-1. Overexpression of JNK facilitates the rapid disappearance of HSF-1 punctate granules after heat shock. Similar to ERK, JNK binds to HSF-1 in the conserved mitogen-activated protein kinases binding motifs and phosphorylates HSF-1 in the regulatory domain. The overexpression of an HSF-1-green fluorescent protein fusion construct lacking JNK phosphorylation sites causes this HSF-1 mutant to form nuclear granules that remain longer in the nucleus after heat shock. Taken together, these findings indicate that JNK phosphorylates HSF-1 and suppresses its transcriptional activity by rapidly clearing HSF-1 from the sites of transcription.
Insights
c-Jun NH(2)-terminal kinase (JNK) phosphorylates heat shock transcription factor 1 (HSF-1), suppressing its activity. JNK promotes the rapid removal of HSF-1 from transcription sites, impacting cellular stress responses.
Area of Science:
- Molecular Biology
- Cellular Stress Response
Background:
- Heat shock transcription factor 1 (HSF-1) regulates heat shock protein expression.
- HSF-1 is activated by stress, translocating to the nucleus and increasing gene transcription.
- Mitogen-activated protein kinase ERK phosphorylates and suppresses HSF-1 activity.
Purpose of the Study:
- To investigate the role of c-Jun NH(2)-terminal kinase (JNK) in HSF-1 regulation.
- To determine if JNK phosphorylates and affects HSF-1 transcriptional activity.
Main Methods:
- Overexpression of JNK in mammalian cells.
- Analysis of HSF-1 localization and nuclear granule dynamics via fluorescent protein tagging.
- Site-directed mutagenesis to identify JNK phosphorylation sites on HSF-1.
Main Results:
- JNK phosphorylates and inactivates HSF-1.
- JNK overexpression accelerates the disappearance of HSF-1 nuclear granules after heat shock.
- HSF-1 mutants lacking JNK phosphorylation sites exhibit prolonged nuclear retention.
Conclusions:
- JNK phosphorylates HSF-1, suppressing its transcriptional activity.
- JNK facilitates the rapid clearance of HSF-1 from transcription sites, modulating the cellular stress response.