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Adler, V., Schaffer, A., Kim, J., Dolan, L. and Ronai, Z (1995). UV irradiation and heat shock mediate JNK activation via alternative pathways. J. Biol. Chem 270, 26071-26077.[Abstract/Free Full Text]

Amin, J., Ananthan, J. and Voellmy, R (1988). Key features of heat shock regulatory elements. Mol. Cell. Biol 8, 3761-3769.[Abstract/Free Full Text]

Baier, G., Baier-Bitterlich, G., Meller, N., Coggeshall, K. M., Giampa, L., Telford, D., Isakov, N. and Altman, A (1994). Expression and biochemical characterization of human protein kinase C-. Eur. J. Biochem 225, 195-203.[Medline]

Baler, R., Dahl, G. and Voellmy, R (1993). Activation of human heat shock genes is accompanied by oligomerization, modification, and rapid translocation of heat shock transcription factor HSF1. Mol. Cell. Biol 13, 2486-2496.[Abstract/Free Full Text]

Calderwood, S. K. and Stevenson, M. A (1993). Inducers of the heat shock response stimulate phospholipase C and phospholipase A2activity in mammalian cells. J. Cell. Physiol 155, 248-256.[Medline]

Chu, B., Soncin, F., Price, B. D., Stevenson, M. A. and Calderwood, S. K (1996). Sequential phosphorylation by mitogen-activated protein kinase and glycogen synthase kinase 3 represses transcriptional activation by heat shock factor 1. J. Biol. Chem 271, 30847-30857.[Abstract/Free Full Text]

Cotto, J. J., Kline, M. and Morimoto, R. I (1996). Activation of heat shock factor 1 DNA binding precedes stress-induced serine phosphorylation. J. Biol. Chem 271, 3355-3358.[Abstract/Free Full Text]

Dignam, J. D., Lebovitz, R. M. and Roeder, R. G (1983). Accurate transcription initiation by RNA polymerase II in a soluble extract from isolated mammalian nuclei. Nucleic Acids Res 11, 1475-1489.[Abstract/Free Full Text]

Dubois, M.-F. and Bensaude, O (1993). MAP kinase activation during heat shock in quiescent and exponentially growing mammalian cells. FEBS Lett 324, 191-195.[Medline]

Elia, G., De Marco, A., Rossi, A. and Santoro, M. G (1996). Inhibition of HSP70 expression by calcium ionophore A23187 in human cells. J. Biol. Chem 271, 16111-16118.[Abstract/Free Full Text]

Engelberg, D., Zandi, E., Parker, C. S. and Karin, M (1994). The yeast and mammalian Ras pathways control transcription of heat shock genes independently of heat shock transcription factor. Mol. Cell. Biol 14, 4929-4937.[Abstract/Free Full Text]

Erdos, G. and Lee, Y. J (1994). Effect of staurosporine on the transcription of HSP70 heat shock gene in HT-29 cells. Biochem. Biophys. Res. Commun 202, 476-483.[Medline]

Farkas, T., Kutskova, Y. A. and Zimarino, V (1998). Intramolecular repression of mouse heat shock factor 1. Mol. Cell. Biol 18, 906-918.[Abstract/Free Full Text]

Fort, Ph., Marty, L., Piechaczyk, M., El Sabrouty, S., Dani, Ch., Jeanteur, Ph. and Blanchard, J. M (1985). Various rat adult tissues express only one major mRNA species from the glyceraldehyde-3-phosphate-dehydrogenase multigenic family. Nucleic Acids Res 13, 1431-1442.[Abstract/Free Full Text]

Ginty, D. D., Kornhauser, J. M., Thompson, M. A., Bading, H., Mayo, K. E., Takahashi, J. S. and Greenberg, M. E (1993). Regulation of CREB phosphorylation in the suprachiasmatic nucleus by light and a circadian clock. Science 260, 238-241.[Abstract/Free Full Text]

Goodson, M. L. and Sarge, K. D (1995). Heat-inducible DNA binding of purified heat shock transcription factor 1. J. Biol. Chem 270, 2447-2450.[Abstract/Free Full Text]

Graham, F. L. and van der Eb, A. J (1973). A new technique for the assay of infectivity of human adenovirus 5 DNA. Virology 52, 456-467.[Medline]

Green, M., Schuetz, T. J., Sullivan, E. K. and Kingston, R. E (1995). A heat shock-responsive domain of human HSF1 that regulates transcription activation domain function. Mol. Cell. Biol 15, 3354-3362.[Abstract]

Griffiths, G., Garrone, B., Deacon, E., Owen, P., Pongracz, J., Mead, G., Bradwell, A., Watters, D. and Lord, J (1996). The polyether bistratene A activates protein kinase C-delta and induces growth arrest in HL60 cells. Biochem. Biophys. Res. Commun 222, 802-808.[Medline]

Hardy, L., Goodman, M., Vasques, A., Chauhan, D., Anderson, K. C., Voellmy, R. and Spector, N. L (1997). Activation signals regulate heat shock transcription factor 1 in human B lymphocytes. J. Cell. Physiol 170, 235-240.[Medline]

Hocevar, B. A., Morrow, D. M., Tykocinski, M. L. and Fields, A. P (1992). Protein kinase C isotypes in human erythroleukemia cell proliferation and differentiation. J. Cell Sci 101, 671-679.[Abstract/Free Full Text]

Holmberg. C. I., Lepp\212, S., Eriksson, J. E. and Sistonen, L (1997). The phorbol ester 12-O-tetradecanoylphorbol 13-acetate enhances the heat-induced stress response. J. Biol. Chem 272, 6792-6798.[Abstract/Free Full Text]

Jacquier-Sarlin, M. R., Jornot, L. and Polla, B. S (1995). Differential expression and regulation of hsp70 and hsp90 by phorbol esters and heat shock. J. Biol. Chem 270, 14094-14099.[Abstract/Free Full Text]

Jurivich, D. A., Chung, J. and Blenis, J (1991). Heat shock induces two distinct S6 kinase activities in quiescent mammalian fibroblasts. J. Cell. Physiol 148, 252-259.[Medline]

Jurivich, D. A., Pachetti, C., Qiu, L. and Welk, J. F (1995). Salicylate triggers heat shock factor differently than heat. J. Biol. Chem 270, 24489-24495.[Abstract/Free Full Text]

Jurivich, D. A., Pangas, S., Qiu, L. and Welk, J. F (1996). Phospholipase A2 triggers the first phase of the thermal stress response and exhibits cell-type specificity. J. Immunol 157, 1669-1677.[Abstract]

Jurivich, D. A., Sistonen, L., Kroes, R. A. and Morimoto, R. I (1992). Effect of sodium salicylate on the human heat shock response. Science 255, 1243-1245.[Abstract/Free Full Text]

Jurivich, D. A., Sistonen, L., Sarge, K. D. and Morimoto, R. I (1994). Arachidonate is a potent modulator of human heat shock gene transcription. Proc. Nat. Acad. Sci. USA 91, 2280-2284.[Abstract/Free Full Text]

Kamada, Y., Jung, U. S., Piotrowski, J. and Levin, D. E (1995). The protein kinase C-activated MAP kinase pathway of Saccharomyces cerevisiae mediates a novel aspect of the heat shock response. Genes Dev 9, 1559-1571.[Abstract/Free Full Text]

Kass, G. E. N., Duddy, S. K. and Orrenius, S (1989). Activation of hepatocyte protein kinase C by redox-cycling quinones. Biochem. J 260, 499-507.[Medline]

Kim, J., Nueda, A., Meng, Y.-H., Dynan, W. S. and Mivechi, N. F (1997). Analysis of the phosphorylation of human heat shock transcription factor-1 by MAP kinase family members. J. Cell. Biochem 67, 43-54.[Medline]

Kline, M. P. and Morimoto, R. I (1997). Repression of the heat shock factor 1 transcriptional activation domain is modulated by constitutive phosphorylation. Mol. Cell. Biol 17, 2107-2115.[Abstract]

Knauf, U., Newton, E. M., Kyriakis, J. and Kingston, R. E (1996). Repression of human heat shock factor 1 activity at control temperature by phosphorylation. Genes Dev 10, 2782-2793.[Abstract/Free Full Text]

Konishi, H., Matsuzaki, H., Tanaka, M., Ono, Y., Tokunaga, C., Kuroda, S. and Kikkawa, U (1996). Activation of RAC-protein kinase by heat shock and hyperosmolarity stress through a pathway independent of phosphatidylinositol 3-kinase. Proc. Nat. Acad. Sci. USA 93, 7639-7643.[Abstract/Free Full Text]

Larson, J. S., Schuetz, T. J. and Kingston, R. E (1988). Activation in vitro of sequence-specific DNA binding by a human regulatory factor. Nature 335, 372-375.[Medline]

Larson, J. S., Schuetz, T. J. and Kingston, R. E (1995). In vitro activation of purified human heat shock factor by heat. Biochemistry 34, 1992-1911.

Lee, B. S., Chen, J., Angelidis, C., Jurivich, D. A. and Morimoto, R. I (1995). Pharmacological modulation of heat shock factor 1 by antiinflammatory drugs results in protection against stress-induced cellular damage. Proc. Nat. Acad. Sci. USA 92, 7207-7211.[Abstract/Free Full Text]

Lee, Y. J., Berns, C. M., Erdos, G., Borrelli, M. J., Ahn, C. H. and Corry, P. M (1994). Effect of 1-(5-isoquinolinesulfonyl)-2-methylpiperazine (H-7) on Hsp70 and Hsp28 gene expression and thermotolerance development in human colon carcinoma cells. Biochem. Pharmacol 48, 2057-2063.[Medline]

Lee, Y. J., Berns, C. M., Erdos, G. and Corry, P. M (1994). Effect ofisoquinolinesulfonamides on heat shock gene expression during heating at 41degC in human carcinoma cell lines. Biochem. Biophys. Res. Commun 199, 714-719.[Medline]

Lin, R. Z., Hu, Z.-W., Chin, J. H. and Hoffman, B. B (1997). Heat shock activates c-src tyrosine kinases and phosphatidylinositol 3-kinase in NIH3T3 fibroblasts. J. Biol. Chem 272, 31196-31202.[Abstract/Free Full Text]

Lindquist, S (1988). The heat-shock proteins. Annu. Rev. Genet 22, 631-677.[Medline]

Liu, X.-D. and Thiele, D. J (1996). Oxidative stress induces heat shock factor phosphorylation and HSF-dependent activation of yeast metallothionein gene transcription. Genes Dev 10, 592-603.[Abstract/Free Full Text]

Mivechi, N. F. and Giaccia, A. J (1995). Mitogen-activated protein kinase acts as a negative regulator of the heat shock response in NIH3T3 cells. Cancer Res 55, 5512-5519.[Abstract/Free Full Text]

Morgan, W. D (1989). Transcription factor Sp1 binds to and activates a human hsp70 gene promoter. Mol. Cell. Biol 9, 4099-4104.[Abstract/Free Full Text]

Morgan, W. D., Williams, G. T., Morimoto, R. I., Greene, J., Kingston, R. E. and Tjian, R (1987). Two transcriptional activators, CCAAT-box-binding transcription factor and heat shock transcription factor, interact with a human hsp70 gene promoter. Mol. Cell. Biol 7, 1129-1138.[Abstract/Free Full Text]

Mosser, D. D., Theodorakis, N. G. and Morimoto, R. I (1988). Coordinate changes in heat shock element-binding activity and HSP70 gene transcription rates in human cells. Mol. Cell. Biol 8, 4736-4744.[Abstract/Free Full Text]

Murray, N. R. and Fields, A. P (1997). Atypical protein kinase Cprotects human leukemia cells against drug-induced apoptosis. J. Biol. Chem 272, 27521-27524.[Abstract/Free Full Text]

Nakai, A. and Morimoto, R. I (1993). Characterization of a novel chicken heat shock transcription factor, heat shock factor 3, suggests a new regulatory pathway. Mol. Cell. Biol 13, 1983-1997.[Abstract/Free Full Text]

Nakai, A., Tanabe, M., Kawazoe, Y., Inazawa, J., Morimoto, R. I. and Nagata, K (1997). HSF4, a new member of the human heat shock factor family which lacks properties of a transcriptional activator. Mol. Cell. Biol 17, 469-481.[Abstract]

Newton, A. C (1997). Regulation of protein kinase C. Curr. Opin. Cell Biol 9, 161-167.[Medline]

Rabindran, S. K., Giorgi, G., Clos, J. and Wu, C (1991). Molecular cloning and expression of a human heat shock factor, HSF1. Proc. Nat. Acad. Sci. USA 88, 6906-6910.[Abstract/Free Full Text]

Rabindran, S. K., Haroun, R. I., Clos, J., Wisniewski, J. and Wu, C (1993). Regulation of heat shock factor trimer formation: role of conserved leucine zipper. Science 259, 230-234.[Abstract/Free Full Text]

Ritz, M.-F., Masmoudi, A., Matter, N., Rogue, P., Lang, D., Freysz, L. and Malviya, A. N (1993). Heat stressing stimulates nuclear protein kinase C raising diacylglycerol levels: Nuclear protein kinase C activation precedes Hsp70 mRNA expression. Receptor 3, 311-324.[Medline]

Rouse, J., Cohen, P., Trigon, S., Morange, M., Alonso-Llamazares, A., Zamanillo, D., Hunt, T. and Nebreda, A. R (1994). A novel kinase cascade triggered by stress and heat shock that stimulates MAPKAP kinase-2 and phosphorylation of the small heat shock proteins. Cell 78, 1027-1037.[Medline]

Sarge, K. D., Murphy, S. P. and Morimoto, R. I (1993). Activation of heat shock gene transcription by heat shock factor 1 involves oligomerization, acquisition of DNA-binding activity, and nuclear localization and can occur in the absence of stress. Mol. Cell. Biol 13, 1392-1407.[Abstract/Free Full Text]

Sarge, K. D., Zimarino, V., Holm, K., Wu, C. and Morimoto, R. I (1991). Cloning and characterization of two mouse heat shock factors with distinct inducible and constitutive DNA-binding ability. Genes Dev 5, 1902-1911.[Abstract/Free Full Text]

Schuetz, T. J., Gallo, G. J., Sheldon, L., Tempst, P. and Kingston, R. E (1991). Isolation of a cDNA for HSF2: evidence for two heat shock factor genes in humans. Proc. Nat. Acad. Sci. USA 88, 6911-6915.[Abstract/Free Full Text]

Shi, Y., Mosser, D. D. and Morimoto, R. I (1998). Molecular chaperones as HSF1-specific transcriptional repressors. Genes Dev 12, 654-666.[Abstract/Free Full Text]

Sistonen, L., Sarge, K. D. and Morimoto, R. I (1994). Human heat shock factors 1 and 2 are differentially activated and can synergistically induce hsp70 gene transcription. Mol. Cell. Biol 14, 2087-2099.[Abstract/Free Full Text]

Sorger, P. K. and Pelham, H. R. B (1988). Yeast heat shock factor is an essential DNA-binding protein that exhibits temperature-dependent phosphorylation. Cell 54, 855-864.[Medline]

Toullec, D., Pianetti, P., Coste, H., Bellevergue, P., Grand-Perret, T., Ajakane, M., Baudet, V., Boissin, P., Boursier, E., Loriolle, F., Duhamel, L., Charon, D. and Kirilovsky, J (1991). The bisindolylmaleimide GF 109203X is a potent and selective inhibitor of protein kinase C. J. Biol. Chem 266, 15771-15781.[Abstract/Free Full Text]

Vihinen T., Auvinen, P., Alanen-Kurki, L. and Jalkanen, M (1993). Structural organization and genomic sequence of mouse syndecan-1 gene. J. Biol. Chem 268, 17261-17269.[Abstract/Free Full Text]

Williams, G. T., McClanahan, T. K. and Morimoto, R. I (1989). E1a transactivation of the human HSP70 promoter is mediated through the basal transcriptional complex. Mol. Cell. Biol 9, 2574-2587.[Abstract/Free Full Text]

Williams, G. T. and Morimoto, R. I (1990). Maximal stress-induced transcription from the human HSP70 promoter requires interactions with the basal promoter elements independent of rotational alignment. Mol. Cell. Biol 10, 3125-3136.[Abstract/Free Full Text]

Wooten, M (1991). Alternations in protein kinase C type III-during heat shock of rat embryo fibroblasts. Exp. Cell Res 193, 274-278.[Medline]

Wu, B., Hunt, C. and Morimoto, R. I (1985). Structure and expression of the human gene encoding major heat shock protein HSP70. Mol. Cell. Biol 5, 330-341.[Abstract/Free Full Text]

Wu, B. J. and Morimoto, R. I (1985). Transcription of the human hsp70 gene is induced by serum stimulation. Proc. Nat. Acad. Sci. USA 82, 6070-6074.[Abstract/Free Full Text]

Wu, C (1995). Heat shock transcription factors: Structure and regulation. Annu. Rev. Cell Dev. Biol 11, 441-469.[Medline]

Xia, W., Guo, Y., Vilaboa, N., Zuo, J. and Voellmy, R (1998). Transcriptional activation of heat shock factor HSF1 probed by phosphopeptide analysis of factor 32P-labeled in vivo. J. Biol. Chem 273, 8749-8755.[Abstract/Free Full Text]

Xia, W. and Voellmy, R (1997). Hyperphosphorylation of heat shock transcription factor 1 is correlated with transcriptional competence and slow dissociation of active factor trimers. J. Biol. Chem 272, 4094-4102.[Abstract/Free Full Text]

Xiao, H. and Lis, J. T (1988). Germline transformation used to define key features of heat-shock response elements. Science 239, 1139-1142.[Abstract/Free Full Text]

Yamamoto, N., Smith, M. W., Maki, A., Berezesky, I. K. and Trump, B. F (1994). Role of cytosolic Ca2+and protein kinases in the induction of the hsp70 gene. Kidney Int 45, 1093-1104.[Medline]

Zheng, B., Chambers, T. C., Raynor, R. L., Markham, P. N., Gebel, H. M., Vogler, W. R. and Kuo, J. F (1994). Human leukemia K562 cell mutant (K562/OA200) selected for resistance to okadaic acid (protein phosphatase inhibitor) lacks protein kinase C-, exhibits multidrug resistance phenotype, and expresses drug pump P-glycoprotein. J. Biol. Chem 269, 12332-12338.[Abstract/Free Full Text]

Zuo, J., Baler, R., Dahl, G. and Voellmy, R (1994). Activation of the DNA-binding ability of human heat shock transcription factor 1 may involve the transition from an intramolecular to an intermolecular triple-stranded coiled-coil structure. Mol. Cell. Biol 14, 7557-7568.[Abstract/Free Full Text]


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