A New Class of Repression Modules Is Critical for Heme Regulation of the Yeast Transcriptional Activator Hap1
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Li Zhang | Li Zhang | T. Hon | A. Hach | Thomas Hon | Angela Hach
[1] A. Schechter,et al. Inducible transcription of five globin genes in K562 human leukemia cells. , 1983, Proceedings of the National Academy of Sciences of the United States of America.
[2] I. London,et al. Regulation of protein synthesis by heme-regulated eIF-2 alpha kinase. , 1995, Trends in biochemical sciences.
[3] Li Zhang,et al. The Yeast Heme-responsive Transcriptional Activator Hap1 Is a Preexisting Dimer in the Absence of Heme* , 1999, The Journal of Biological Chemistry.
[4] L. Guarente,et al. Distinctly regulated tandem upstream activation sites mediate catabolite repression of the CYC1 gene of S. cerevisiae , 1984, Cell.
[5] L. Guarente,et al. HAP1 positive control mutants specific for one of two binding sites. , 1992, Genes & development.
[6] J. Hopper,et al. Novel Gal3 proteins showing altered Gal80p binding cause constitutive transcription of Gal4p-activated genes in Saccharomyces cerevisiae , 1997, Molecular and cellular biology.
[7] M. Maines,et al. Heme Oxygenase-2 Is a Hemoprotein and Binds Heme through Heme Regulatory Motifs That Are Not Involved in Heme Catalysis* , 1997, The Journal of Biological Chemistry.
[8] M. Johnston,et al. Multiple mechanisms provide rapid and stringent glucose repression of GAL gene expression in Saccharomyces cerevisiae , 1994, Molecular and cellular biology.
[9] Cheng Wang,et al. Molecular Mechanism Governing Heme Signaling in Yeast: a Higher-Order Complex Mediates Heme Regulation of the Transcriptional Activator HAP1 , 1998, Molecular and Cellular Biology.
[10] L. Guarente,et al. Yeast HAP1 activator binds to two upstream activation sites of different sequence , 1987, Cell.
[11] A. Spirin,et al. Cotranslational Folding of Globin* , 1997, The Journal of Biological Chemistry.
[12] M. Timko,et al. Regulation by heme of mitochondrial protein transport through a conserved amino acid motif. , 1993, Science.
[13] I. London,et al. Regulation of protein synthesis by heme-regulated eIF-2α kinase , 1995 .
[14] L. Guarente,et al. Functional dissection and sequence of yeast HAP1 activator , 1989, Cell.
[15] L. Guarente,et al. HAP1 is nuclear but is bound to a cellular factor in the absence of heme. , 1994, The Journal of biological chemistry.
[16] T. Maniatis,et al. Transcriptional regulation of globin gene expression in the human erythroid cell line K562. , 1983, Science.
[17] A. Zollner,et al. Heme Binding to a Conserved Cys-Pro-Val Motif Is Crucial for the Catalytic Function of Mitochondrial Heme Lyases* , 1996, The Journal of Biological Chemistry.
[18] C. Lowry,et al. Regulation of gene expression by oxygen in Saccharomyces cerevisiae. , 1992, Microbiological reviews.
[19] J. Wells,et al. Systematic mutational analyses of protein-protein interfaces. , 1991, Methods in enzymology.
[20] Adam Platt,et al. The yeast galactose genetic switch is mediated by the formation of a Gal4p–Gal80p–Gal3p complex , 1998, The EMBO journal.
[21] Jane-Jane Chen,et al. Hsp90 Is Obligatory for the Heme-regulated eIF-2α Kinase to Acquire and Maintain an Activable Conformation* , 1997, The Journal of Biological Chemistry.
[22] T. Nagai,et al. The role of heme in gene expression. , 1996, International journal of hematology.
[23] I. London,et al. Cloning of the cDNA of the heme-regulated eukaryotic initiation factor 2 alpha (eIF-2 alpha) kinase of rabbit reticulocytes: homology to yeast GCN2 protein kinase and human double-stranded-RNA-dependent eIF-2 alpha kinase. , 1991, Proceedings of the National Academy of Sciences of the United States of America.
[24] L. Guarente,et al. The yeast activator HAP1--a GAL4 family member--binds DNA in a directly repeated orientation. , 1994, Genes & development.
[25] L. Guarente,et al. Heme binds to a short sequence that serves a regulatory function in diverse proteins. , 1995, The EMBO journal.
[26] S. Johnston,et al. Nondissociation of GAL4 and GAL80 in vivo after galactose induction. , 1992, Science.
[27] S. Sassa. Novel effects of heme and heme-related compounds in biological systems , 1996 .
[28] B. Guiard,et al. Evidence for an interaction between the CYP1(HAP1) activator and a cellular factor during heme‐dependent transcriptional regulation in the yeast Saccharomyces cerevisiae. , 1993, The EMBO journal.
[29] L. Guarente,et al. Heme regulates transcription of the CYC1 gene of S. cerevisiae via an upstream activation site , 1983, Cell.
[30] P. Rangarajan,et al. Haem as a multifunctional regulator. , 1989, Trends in biochemical sciences.
[31] L. Guarente,et al. Evidence that TUP1/SSN6 has a positive effect on the activity of the yeast activator HAP1. , 1994, Genetics.
[32] L. Guarente,et al. Antibody-promoted dimerization bypasses the regulation of DNA binding by the heme domain of the yeast transcriptional activator HAP1. , 1993, Proceedings of the National Academy of Sciences of the United States of America.
[33] P. Rangarajan,et al. Regulation of cytochrome P-450b/e gene expression by a heme- and phenobarbitone-modulated transcription factor. , 1989, Proceedings of the National Academy of Sciences of the United States of America.
[34] M. Parthun,et al. A transcriptionally active form of GAL4 is phosphorylated and associated with GAL80 , 1992, Molecular and cellular biology.
[35] Mark Ptashne,et al. Negative effect of the transcriptional activator GAL4 , 1988, Nature.