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2. The C-terminal hydrophobic repeat of Schizosaccharomyces pombe heat shock factor is not required for heat-induced DNA-binding. Saltsman KA; Prentice HL; Kingston RE Yeast; 1998 Jun; 14(8):733-46. PubMed ID: 9675818 [TBL] [Abstract][Full Text] [Related]
3. The yeast heat shock transcription factor changes conformation in response to superoxide and temperature. Lee S; Carlson T; Christian N; Lea K; Kedzie J; Reilly JP; Bonner JJ Mol Biol Cell; 2000 May; 11(5):1753-64. PubMed ID: 10793149 [TBL] [Abstract][Full Text] [Related]
4. Activation of heat shock transcription factor in yeast is not influenced by the levels of expression of heat shock proteins. Hjorth-Sørensen B; Hoffmann ER; Lissin NM; Sewell AK; Jakobsen BK Mol Microbiol; 2001 Feb; 39(4):914-23. PubMed ID: 11251812 [TBL] [Abstract][Full Text] [Related]
5. Interaction of the Neurospora crassa heat shock factor with the heat shock element during heat shock and different developmental stages. Meyer U; Monnerjahn C; Techel D; Rensing L FEMS Microbiol Lett; 2000 Apr; 185(2):255-61. PubMed ID: 10754257 [TBL] [Abstract][Full Text] [Related]
6. Phosphorylation of the yeast heat shock transcription factor is implicated in gene-specific activation dependent on the architecture of the heat shock element. Hashikawa N; Sakurai H Mol Cell Biol; 2004 May; 24(9):3648-59. PubMed ID: 15082761 [TBL] [Abstract][Full Text] [Related]
7. Mutations in the Schizosaccharomyces pombe heat shock factor that differentially affect responses to heat and cadmium stress. Saltsman KA; Prentice HL; Kingston RE Mol Gen Genet; 1999 Feb; 261(1):161-9. PubMed ID: 10071222 [TBL] [Abstract][Full Text] [Related]
8. SSB, encoding a ribosome-associated chaperone, is coordinately regulated with ribosomal protein genes. Lopez N; Halladay J; Walter W; Craig EA J Bacteriol; 1999 May; 181(10):3136-43. PubMed ID: 10322015 [TBL] [Abstract][Full Text] [Related]
9. Antagonistic interaction of HIV-1 Vpr with Hsf-mediated cellular heat shock response and Hsp16 in fission yeast (Schizosaccharomyces pombe). Benko Z; Liang D; Agbottah E; Hou J; Taricani L; Young PG; Bukrinsky M; Zhao RY Retrovirology; 2007 Mar; 4():16. PubMed ID: 17341318 [TBL] [Abstract][Full Text] [Related]
10. The wing in yeast heat shock transcription factor (HSF) DNA-binding domain is required for full activity. Cicero MP; Hubl ST; Harrison CJ; Littlefield O; Hardy JA; Nelson HC Nucleic Acids Res; 2001 Apr; 29(8):1715-23. PubMed ID: 11292844 [TBL] [Abstract][Full Text] [Related]
12. A stress regulatory network for co-ordinated activation of proteasome expression mediated by yeast heat shock transcription factor. Hahn JS; Neef DW; Thiele DJ Mol Microbiol; 2006 Apr; 60(1):240-51. PubMed ID: 16556235 [TBL] [Abstract][Full Text] [Related]
13. Dynamic association of transcriptional activation domains and regulatory regions in Saccharomyces cerevisiae heat shock factor. Chen T; Parker CS Proc Natl Acad Sci U S A; 2002 Feb; 99(3):1200-5. PubMed ID: 11818569 [TBL] [Abstract][Full Text] [Related]
14. The Skn7 response regulator of Saccharomyces cerevisiae interacts with Hsf1 in vivo and is required for the induction of heat shock genes by oxidative stress. Raitt DC; Johnson AL; Erkine AM; Makino K; Morgan B; Gross DS; Johnston LH Mol Biol Cell; 2000 Jul; 11(7):2335-47. PubMed ID: 10888672 [TBL] [Abstract][Full Text] [Related]
15. Heat shock factor is required for growth at normal temperatures in the fission yeast Schizosaccharomyces pombe. Gallo GJ; Prentice H; Kingston RE Mol Cell Biol; 1993 Feb; 13(2):749-61. PubMed ID: 8423799 [TBL] [Abstract][Full Text] [Related]
16. An Hsp70 antisense gene affects the expression of HSP70/HSC70, the regulation of HSF, and the acquisition of thermotolerance in transgenic Arabidopsis thaliana. Lee JH; Schöffl F Mol Gen Genet; 1996 Aug; 252(1-2):11-9. PubMed ID: 8804399 [TBL] [Abstract][Full Text] [Related]
17. Oxidative stress induced heat shock factor phosphorylation and HSF-dependent activation of yeast metallothionein gene transcription. Liu XD; Thiele DJ Genes Dev; 1996 Mar; 10(5):592-603. PubMed ID: 8598289 [TBL] [Abstract][Full Text] [Related]
18. Regulation of heat shock factor in Schizosaccharomyces pombe more closely resembles regulation in mammals than in Saccharomyces cerevisiae. Gallo GJ; Schuetz TJ; Kingston RE Mol Cell Biol; 1991 Jan; 11(1):281-8. PubMed ID: 1986225 [TBL] [Abstract][Full Text] [Related]
19. Glycogen synthase phosphatase interacts with heat shock factor to activate CUP1 gene transcription in Saccharomyces cerevisiae. Lin JT; Lis JT Mol Cell Biol; 1999 May; 19(5):3237-45. PubMed ID: 10207049 [TBL] [Abstract][Full Text] [Related]
20. Interaction between heat shock transcription factors (HSFs) and divergent binding sequences: binding specificities of yeast HSFs and human HSF1. Sakurai H; Takemori Y J Biol Chem; 2007 May; 282(18):13334-41. PubMed ID: 17347150 [TBL] [Abstract][Full Text] [Related] [Next] [New Search]