References
- Liu P. C. C. and D. J. Thiele, 1999. Modulation of Human Heat Shock Factor Trimerization by the Linker Domain. The Journal of Biological Chemistry 274, 17219-17225 https://doi.org/10.1074/jbc.274.24.17219
- Shi Y., D. D. Mosser, and R. I. Morimoto, 1998. Molecular chapelones as HSF1-specific transcriptional repressors. Genes & Development 12, 654-666 https://doi.org/10.1101/gad.12.5.654
-
Dai R., W. Frejtag, B. He, Y. Zhang, and N. F. Mivech, 2000. c-Jun
$NH_2-terminal$ Kinase Targeting and Phosphorylation of Heat Shock Factor-1 Suppress Its Transcriptional Activity. The Journal of Biological Chemistry 275, 18210-18218 https://doi.org/10.1074/jbc.M000958200 - Ahn S. G., and D. J. Thiele, 2003. Redox regulation of mammalian heat shock factor 1 is essential for Hsp gene activation and protection from stress. Genes & Development 17, 516-528 https://doi.org/10.1101/gad.1044503
- Westerheide S. D. and R. I. Morimoto, 2005. Heat Shock Response Modulators as Therapeutic Tools for Diseases of Protein Conformation. The Journal of Biological Chemistry 280, 33097-33100 https://doi.org/10.1074/jbc.R500010200
- Bharadwaj S., A. Ali, and N. Ovsenek, 1999. Multiple Components of the HSP90 Chaperone Complex Function in Regulation of Heat Shock Factor 1 in Vivo. Molecular and Cellular Biology 19, 8033-8041 https://doi.org/10.1128/MCB.19.12.8033
- Chen T. and C. S. Parker, 2001. Dynamic association of transcriptional activation domains and regulatory regions in Saccharomyces cerevisiae heat shock factor. Proceedings of National Academy of Science 99, 1200-1205
- Kim S. A., J. H. Yoon, S. H. Lee, and S. G. Ahn, 2005. Polo-like Kinase 1 Phospholylates Heat Shock Transcription Factor 1 and Mediates Its Nuclear Translocation during Heat Stress. The Journal of Biological Chemistry 280, 12653-12657 https://doi.org/10.1074/jbc.M411908200
- Morimoto R. I., 1998. Regulation of the heat shock transcriptional response: cross talk between a family of heat shock factors, molecular chaperones, and negative regulators. Genes & Development 12, 3788-3796 https://doi.org/10.1101/gad.12.24.3788
- Pirkkala L., T. P. Alastalo, X. Zuo, I. J. Benjamin, and L. Sistonen, 2000. Distruption of Heat Shock Factor 1 Reveals an Essential Role in the Ubiquitin Proteolytic Pathway. Molecular and Cellular Biology 20, 2670-2675 https://doi.org/10.1128/MCB.20.8.2670-2675.2000
- Green M., T. J. Schuetz, K. Sullivan, and R. E. Kingston, 1995. A Heat Shock-Responsive Domain of Human HSF1 That Regulates Transcription Activation Domain Function. Molecular and Cellular Biology 12, 3354-3362
- Choi H. S., Z. Lin, B. Li, and Y. C. Liu, 1990. Age-dependent Decrease in the Heat-inducible DNA Sequencespecific Binding Activity in Human Diploid Fibroblasts. The Journal of Biological Chemistry 265, 18005-18011
- Lu J., J. H. Park, Y. C. Liu, and K. Y. Chen, 2000. Activation of Heat Shock Factor 1 by Hyperosmotic or Hypo-Osmotic Stress Is Drastically Attenuated in Normal Human Fibroblasts During Senescence. Journal of Cellular Physiology 184, 183-190 https://doi.org/10.1002/1097-4652(200008)184:2<183::AID-JCP5>3.0.CO;2-9
- Paroo Z., M. J. Meredith, M. Locke, J. V. Haist, M. Karmazyn, and E. G. Noble, 2002. Redox signaling of cardiac HSF1 DNA binding. American Physiological Society 283, C404-C411 https://doi.org/10.1152/ajpcell.00051.2002
- Shamovsky, I. and D. Gershon, 2004. Novel regulatory factors of HSF-1 activation: facts and perspectives regarding their involvement in the age-associated attenuation of heat shock response. Mechanisms of Aging and Development 125, 767-775 https://doi.org/10.1016/j.mad.2004.07.006
- Bonner, J. J., D. Chen, K. Storey, M. Tushan, and K. Lea, 2000. Structural Analysis of Yeast HSF by Site-specipic Crosslinking. Journal of Molecular Biology 302, 581-592 https://doi.org/10.1006/jmbi.2000.4096
- Holmberg, C. I., S. E. F. Tran, J. E. Eriksson, and L. Sistonen, 2002. Multisite phosphorylation provides sophisticated regulation of transcription factors. TRENS in Biochemical Sciences 27, 619-627 https://doi.org/10.1016/S0968-0004(02)02207-7
- Dai, Q., C. Zhang, Y. Wu, H. McDonough, R. A. Whaley, V. Godfrey, H. H. Li, N. Madamanchi, W. Xu, L. Neckers, and C. Patterson, 2003. CHIP activate HSF1 and confers protection against apoptosis and cellular stress. European Molecular Biology Organization Journal 22, 5446- 5458 https://doi.org/10.1093/emboj/cdg529
-
Jacquier-Sarlin, M. R. and B. S. Polla, 1996. Dual regulation of heat-shock transcription factor (HSF) activation and DNA-binding activity by
$H_2O_2$ : role of thioredoxin. Biochemistry 318, 187-193 https://doi.org/10.1042/bj3180187 - Kim, H. R., H. S. Kang, and H. D. Kim, 1999. Geldanamycin Induces Heat Shock Protein Expression Through Activation of HSF1 in K562 Erythroleukemic Cells. JUBMB Life 48, 429-433
- Galan, A., A. Troyano, N. E. Vilaboa, C. Fernandez, E. D. Blas, and P. Aller, 2001. Modulation of the stress response during apoptosis and necrosis induction in cadmiumtreated U-937 human promonocytic cells. Biochimica et Biophysica Acta 1538, 38-46 https://doi.org/10.1016/S0167-4889(00)00134-8
- Manalo, D. J. and A. Y. Liu, 2001. Resolution, Detection, and Characterization of Redox Conformers of Human HSF1. The Journal of Biological Chemistry 276, 23554-23561 https://doi.org/10.1074/jbc.M011300200
- Manalo, D. J., Z. Lin, and A. Y. Liu, 2002. Redox- Dependent Regulation of the Conformation and Function of Human Heat Shock Factor 1. Biochemistry 41, 2580-2588 https://doi.org/10.1021/bi0159682