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  • Author: Holmberg S
  • References

Author: Holmberg S


References 32 references


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  • Linder T, et al. (2008) Two conserved modules of Schizosaccharomyces pombe Mediator regulate distinct cellular pathways. Nucleic Acids Res 36(8):2489-504 PMID:18310102
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  • Holmberg S (2006)
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  • Bourbon HM, et al. (2004) A unified nomenclature for protein subunits of mediator complexes linking transcriptional regulators to RNA polymerase II. Mol Cell 14(5):553-7 PMID:15175151
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  • Spahr H, et al. (2003) Mediator influences Schizosaccharomyces pombe RNA polymerase II-dependent transcription in vitro. J Biol Chem 278(51):51301-6 PMID:14534314
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  • Moreira JM, et al. (2002) Neither Reb1p nor poly(dA*T) elements are responsible for the highly specific chromatin organization at the ILV1 promoter. J Biol Chem 277(5):3202-9 PMID:11706001
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  • Spåhr H, et al. (2001) Analysis of Schizosaccharomyces pombe mediator reveals a set of essential subunits conserved between yeast and metazoan cells. Proc Natl Acad Sci U S A 98(21):11985-90 PMID:11572939
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  • Moreira JM and Holmberg S (2000) Chromatin-mediated transcriptional regulation by the yeast architectural factors NHP6A and NHP6B. EMBO J 19(24):6804-13 PMID:11118215
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  • Arévalo-Rodríguez M, et al. (1999) Mutations that cause threonine sensitivity identify catalytic and regulatory regions of the aspartate kinase of Saccharomyces cerevisiae. Yeast 15(13):1331-45 PMID:10509015
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  • Moreira JM and Holmberg S (1999) Transcriptional repression of the yeast CHA1 gene requires the chromatin-remodeling complex RSC. EMBO J 18(10):2836-44 PMID:10329629
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  • Regenberg B, et al. (1999) Substrate specificity and gene expression of the amino-acid permeases in Saccharomyces cerevisiae. Curr Genet 36(6):317-28 PMID:10654085
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  • Wang D, et al. (1999) Yeast transcriptional regulator Leu3p. Self-masking, specificity of masking, and evidence for regulation by the intracellular level of Leu3p. J Biol Chem 274(27):19017-24 PMID:10383402
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  • Horsted MW, et al. (1998) A novel esterase from Saccharomyces carlsbergensis, a possible function for the yeast TIP1 gene. Yeast 14(9):793-803 PMID:9818717
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  • Moreira JM and Holmberg S (1998) Nucleosome structure of the yeast CHA1 promoter: analysis of activation-dependent chromatin remodeling of an RNA-polymerase-II-transcribed gene in TBP and RNA pol II mutants defective in vivo in response to acidic activators. EMBO J 17(20):6028-38 PMID:9774346
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  • Moreira JM, et al. (1998) Datin, a yeast poly(dA:dT)-binding protein, behaves as an activator of the wild-type ILV1 promoter and interacts synergistically with Reb1p. Mol Gen Genet 258(1-2):95-103 PMID:9613577
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  • Regenberg B, et al. (1998) Dip5p mediates high-affinity and high-capacity transport of L-glutamate and L-aspartate in Saccharomyces cerevisiae. Curr Genet 33(3):171-7 PMID:9508791
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  • Pedersen JO, et al. (1997) Locus-specific suppression of ilv1 in Saccharomyces cerevisiae by deregulation of CHA1 transcription. Mol Gen Genet 255(6):561-9 PMID:9323359
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  • Holmberg S and Schjerling P (1996) Cha4p of Saccharomyces cerevisiae activates transcription via serine/threonine response elements. Genetics 144(2):467-78 PMID:8889513
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  • Schjerling P and Holmberg S (1996) Comparative amino acid sequence analysis of the C6 zinc cluster family of transcriptional regulators. Nucleic Acids Res 24(23):4599-607 PMID:8967907
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  • Bornaes C, et al. (1993) A regulatory element in the CHA1 promoter which confers inducibility by serine and threonine on Saccharomyces cerevisiae genes. Mol Cell Biol 13(12):7604-11 PMID:8246977
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  • Bornaes C, et al. (1992) Serine and threonine catabolism in Saccharomyces cerevisiae: the CHA1 polypeptide is homologous with other serine and threonine dehydratases. Genetics 131(3):531-9 PMID:1628804
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  • Remacle JE and Holmberg S (1992) A REB1-binding site is required for GCN4-independent ILV1 basal level transcription and can be functionally replaced by an ABF1-binding site. Mol Cell Biol 12(12):5516-26 PMID:1448083
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  • Nielsen TL, et al. (1990) Regulated overproduction and secretion of yeast carboxypeptidase Y. Appl Microbiol Biotechnol 33(3):307-12 PMID:1366639
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  • Gjermansen C, et al. (1988) Towards diacetyl-less brewers' yeast. Influence of ilv2 and ilv5 mutations. J Basic Microbiol 28(3):175-83 PMID:3057172
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  • Holmberg S and Petersen JG (1988) Regulation of isoleucine-valine biosynthesis in Saccharomyces cerevisiae. Curr Genet 13(3):207-17 PMID:3289762
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  • Petersen JG, et al. (1988) Molecular genetics of serine and threonine catabolism in Saccharomyces cerevisiae. Genetics 119(3):527-34 PMID:2841185
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  • Nilsson-Tillgren T, et al. (1986) Analysis of chromosome V and the ILV1 gene from Saccharomyces carlsbergensis Carlsberg Res Commun 51:309-326
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  • Petersen JG and Holmberg S (1986) The ILV5 gene of Saccharomyces cerevisiae is highly expressed. Nucleic Acids Res 14(24):9631-51 PMID:3027658
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  • Petersen JGL, et al. (1983) Mutational analysis of isoleucine-valine biosynthesis in Saccharomyces cerevisiae. Mapping of ilv2 and ilv5 Carlsberg Res Commun 48:21-34
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  • Kielland-Brandt MC, et al. (1980) Genetic evidence for nuclear location of 2-micron DNA in yeast Carlsberg Res Commun 45:119-124
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  • Holmberg S and Kielland-Brandt MC (1978) A mutant of saccharomyces cerevisiae temperature sensitive for flocculation. Influence of oxygen and respiratory deficiency on flocculence Carlsberg Res Commun 43:37-47
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