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PMID: 1561077 Published · ppublish English Journal Article Research Support, U.S. Gov't, P.H.S. Review

Metal-regulated transcription in eukaryotes.

Nucleic acids research ·Vol. 20 ·No. 6 ·1992-03-25 ·Pages 1183-91

Thiele DJ

Abstract

This review has summarized many of the major aspects of metal-regulated gene transcription in eukaryotic organisms as they are currently understood at the mechanistic level. Clearly, metals represent a class of important transcriptional effector molecules which regulate gene expression in different ways and both by activation or repression of gene transcription. To date, studies of metal-regulated transcription in fungi have resulted in the most detailed description of the structure, function and mechanisms of action of eukaryotic metal-responsive transcription factors. Recently, significant progress has been made in higher eukaryotic systems through the biochemical detection and purification of MRE binding proteins which may represent MRTFs. Additionally, perhaps fungi will be exploited for their genetics and ease of manipulation to clone and functionally analyze cDNAs for MRTFs from higher eukaryotes. The isolation of cDNAs for higher eukaryotic MRTFs will provide important tools for answering a number of interesting questions in metal-regulated gene transcription. How do higher eukaryotes activate MT gene transcription in response to a broad range of environmental metals? What are the tissue distributions of MRTFs and how does their activity correlate with the exposure of different tissues to varying concentrations of metals? What are the identities of other genes regulated by MRTFs and why are such genes metal-responsive? A comprehensive understanding of the detailed mechanisms for metal-regulated transcription will ultimately require an understanding of how eukaryotic cells sense, transport, distribute and remove metals from their environment. These questions provide an interesting and exciting area of investigation for geneticists, physiologists, molecular biologists, biophysicists and biochemists now and in the future.

MeSH Terms
Animals Base Sequence DNA Gene Expression Regulation Humans Metals Molecular Sequence Data Transcription, Genetic
Chemicals
Metals DNA
Authors & Affiliations
1 authors, click to expand affiliations / ORCID
Thiele D J
Department of Biological Chemistry, University of Michigan Medical School, Ann Arbor.
References (88)
88 references, click to expand
  1. A nuclear factor binds to the metal regulatory elements of the mouse gene encoding metallothionein-I.
    Nucleic Acids Res. 1991 Aug 11;19(15):4225-31 PMID: 1870976
  2. Heavy metals induce expression of the TPA-inducible sequence (TIS) genes.
    J Cell Physiol. 1991 Jul;148(1):68-74 PMID: 1907289
  3. ACE2, an activator of yeast metallothionein expression which is homologous to SWI5.
    Mol Cell Biol. 1991 Jan;11(1):476-85 PMID: 1986241
  4. ACE1, a copper-dependent transcription factor, activates expression of the yeast copper, zinc superoxide dismutase gene.
    Proc Natl Acad Sci U S A. 1991 Oct 1;88(19):8558-62 PMID: 1924315
  5. Evidence for co-regulation of Cu,Zn superoxide dismutase and metallothionein gene expression in yeast through transcriptional control by copper via the ACE 1 factor.
    FEBS Lett. 1991 Jan 28;278(2):263-6 PMID: 1991520
  6. Metal ion resistance in fungi: molecular mechanisms and their regulated expression.
    J Cell Biochem. 1991 Jan;45(1):30-40 PMID: 2005182
  7. Evolutionary relationships among pathogenic Candida species and relatives.
    J Bacteriol. 1991 Apr;173(7):2250-5 PMID: 2007550
  8. Yeast histone H4 N-terminal sequence is required for promoter activation in vivo.
    Cell. 1991 Jun 14;65(6):1023-31 PMID: 2044150
  9. Characterization of a cDNA encoding the 70-kDa single-stranded DNA-binding subunit of human replication protein A and the role of the protein in DNA replication.
    J Biol Chem. 1991 Jun 25;266(18):12090-8 PMID: 2050703
  10. Manganese peroxidase gene transcription in Phanerochaete chrysosporium: activation by manganese.
    J Bacteriol. 1991 Jul;173(13):4101-6 PMID: 2061289
  11. A copper-thiolate polynuclear cluster in the ACE1 transcription factor.
    Proc Natl Acad Sci U S A. 1991 Jul 15;88(14):6127-31 PMID: 2068093
  12. A single amino acid change in CUP2 alters its mode of DNA binding.
    Mol Cell Biol. 1990 Sep;10(9):4778-87 PMID: 2167439
  13. Metal-dependent binding of a nuclear factor to the rat metallothionein-I promoter.
    Nucleic Acids Res. 1990 Oct 25;18(20):6049-55 PMID: 2235487
  14. Cloned yeast and mammalian transcription factor TFIID gene products support basal but not activated metallothionein gene transcription.
    Proc Natl Acad Sci U S A. 1990 Dec;87(23):9168-72 PMID: 2251259
  15. Maximal stress-induced transcription from the human HSP70 promoter requires interactions with the basal promoter elements independent of rotational alignment.
    Mol Cell Biol. 1990 Jun;10(6):3125-36 PMID: 2342471
  16. Zinc dependent binding of a liver nuclear factor to metal response element MRE-a of the mouse metallothionein-I gene and variant sequences.
    Nucleic Acids Res. 1990 Aug 25;18(16):4683-90 PMID: 2395635
  17. Cu,Zn superoxide dismutase and copper deprivation and toxicity in Saccharomyces cerevisiae.
    J Bacteriol. 1990 Jan;172(1):317-25 PMID: 2403543
  18. Candida glabrata metallothioneins. Cloning and sequence of the genes and characterization of proteins.
    J Biol Chem. 1989 Nov 25;264(33):19747-53 PMID: 2584191
  19. Structure of an ectodermally expressed sea urchin metallothionein gene and characterization of its metal-responsive region.
    Mol Cell Biol. 1989 Dec;9(12):5445-55 PMID: 2586524
  20. A cysteine-rich nuclear protein activates yeast metallothionein gene transcription.
    Mol Cell Biol. 1989 Feb;9(2):421-9 PMID: 2651899
  21. The CUP2 gene product regulates the expression of the CUP1 gene, coding for yeast metallothionein.
    EMBO J. 1989 Jan;8(1):255-60 PMID: 2653812
  22. Copper and the ACE1 regulatory protein reversibly induce yeast metallothionein gene transcription in a mouse extract.
    Proc Natl Acad Sci U S A. 1989 Nov;86(21):8377-81 PMID: 2682650
  23. Fine mapping of a mouse metallothionein gene metal response element.
    Mol Cell Biol. 1989 Mar;9(3):1376-80 PMID: 2725504
  24. Characterization of Gmhsp26-A, a stress gene encoding a divergent heat shock protein of soybean: heavy-metal-induced inhibition of intron processing.
    Mol Cell Biol. 1988 Mar;8(3):1113-22 PMID: 2835661
  25. A nuclear factor requires Zn2+ to bind a regulatory MRE element of the mouse gene encoding metallothionein-1.
    Gene. 1991 Jan 15;97(2):295-300 PMID: 1999294
  26. Multicopy CUP1 plasmids enhance cadmium and copper resistance levels in yeast.
    Mol Gen Genet. 1991 Mar;225(3):363-8 PMID: 2017134
  27. Requirement for acidic amino acid residues immediately N-terminal to the conserved domain of Saccharomyces cerevisiae TFIID.
    EMBO J. 1991 Jul;10(7):1843-52 PMID: 2050121
  28. Isolation of a metal-activated transcription factor gene from Candida glabrata by complementation in Saccharomyces cerevisiae.
    Proc Natl Acad Sci U S A. 1991 Jul 15;88(14):6112-6 PMID: 2068090
  29. Nucleosomes: regulators of transcription.
    Trends Genet. 1990 Dec;6(12):395-400 PMID: 2087781
  30. Antibody-mediated activation of Drosophila heat shock factor in vitro.
    Science. 1990 Aug 3;249(4968):546-9 PMID: 2200124
  31. Selective and tandem amplification of a member of the metallothionein gene family in Candida glabrata.
    J Biol Chem. 1990 Apr 15;265(11):6369-75 PMID: 2318858
  32. Manganese regulates expression of manganese peroxidase by Phanerochaete chrysosporium.
    J Bacteriol. 1990 Jun;172(6):3125-30 PMID: 2345139
  33. ACE1 transcription factor produced in Escherichia coli binds multiple regions within yeast metallothionein upstream activation sequences.
    Mol Cell Biol. 1990 Jan;10(1):426-9 PMID: 2403647
  34. Transcription factor MBF-I interacts with metal regulatory elements of higher eucaryotic metallothionein genes.
    Mol Cell Biol. 1989 Dec;9(12):5315-23 PMID: 2586522
  35. Copper-induced binding of cellular factors to yeast metallothionein upstream activation sequences.
    Proc Natl Acad Sci U S A. 1989 Jan;86(1):65-9 PMID: 2643107
  36. Cooperative activation of a eukaryotic transcription factor: interaction between Cu(I) and yeast ACE1 protein.
    Proc Natl Acad Sci U S A. 1989 Jul;86(14):5267-71 PMID: 2664778
  37. Transcriptional activation of the heme oxygenase gene by heme and cadmium in mouse hepatoma cells.
    J Biol Chem. 1989 Apr 15;264(11):6371-5 PMID: 2703493
  38. Nucleosome loss activates yeast downstream promoters in vivo.
    Cell. 1988 Dec 23;55(6):1137-45 PMID: 2849508
  39. Metal regulatory elements of the mouse metallothionein-I gene.
    Experientia Suppl. 1987;52:407-14 PMID: 2959530
  40. Regulation by copper of the expression of plastocyanin and cytochrome c552 in Chlamydomonas reinhardi.
    Mol Cell Biol. 1986 Feb;6(2):462-9 PMID: 3023849
  41. Copper activates metallothionein gene transcription by altering the conformation of a specific DNA binding protein.
    Cell. 1988 Nov 18;55(4):705-17 PMID: 3052856
  42. Mammalian metallothionein is functional in yeast.
    Science. 1986 Feb 21;231(4740):854-6 PMID: 3080806
  43. A zinc-responsive factor interacts with a metal-regulated enhancer element (MRE) of the mouse metallothionein-I gene.
    EMBO J. 1988 Dec 1;7(12):3763-70 PMID: 3208749
  44. Ferritin: structure, gene regulation, and cellular function in animals, plants, and microorganisms.
    Annu Rev Biochem. 1987;56:289-315 PMID: 3304136
  45. Isolation of cDNA encoding transcription factor Sp1 and functional analysis of the DNA binding domain.
    Cell. 1987 Dec 24;51(6):1079-90 PMID: 3319186
  46. Induction of ferritin subunit synthesis by iron is regulated at both the transcriptional and translational levels.
    J Biol Chem. 1988 Jun 25;263(18):8938-42 PMID: 3379054
  47. Metallothionein.
    Annu Rev Biochem. 1986;55:913-51 PMID: 3527054
  48. Tandemly duplicated upstream control sequences mediate copper-induced transcription of the Saccharomyces cerevisiae copper-metallothionein gene.
    Mol Cell Biol. 1986 Apr;6(4):1158-63 PMID: 3537699
  49. Nucleotide sequence of the mouse alpha 1-acid glycoprotein gene 1.
    Biochemistry. 1987 Aug 25;26(17):5244-50 PMID: 3676251
  50. Metal-responsive elements act as positive modulators of human metallothionein-IIA enhancer activity.
    Mol Cell Biol. 1987 Feb;7(2):606-13 PMID: 3821726
  51. Identification of multiple metal regulatory elements in mouse metallothionein-I promoter by assaying synthetic sequences.
    Nature. 1985 Oct 31-Nov 6;317(6040):828-31 PMID: 4058587
  52. A 12-base-pair DNA motif that is repeated several times in metallothionein gene promoters confers metal regulation to a heterologous gene.
    Proc Natl Acad Sci U S A. 1984 Dec;81(23):7318-22 PMID: 6095286
  53. Primary structure and transcription of an amplified genetic locus: the CUP1 locus of yeast.
    Proc Natl Acad Sci U S A. 1984 Jan;81(2):337-41 PMID: 6364141
  54. Competition for cellular factors that activate metallothionein gene transcription.
    Nature. 1984 Dec 20-1985 Jan 2;312(5996):781-5 PMID: 6514009
  55. Metallothionein mRNA induction in HeLa cells in response to zinc or dexamethasone is a primary induction response.
    Nature. 1980 Jul 17;286(5770):295-7 PMID: 7402316
  56. Cadmium induces transcription of proto-oncogenes c-jun and c-myc in rat L6 myoblasts.
    J Biol Chem. 1990 Aug 25;265(24):14061-4 PMID: 1696944
  57. Induction of several acute-phase protein genes by heavy metals: a new class of metal-responsive genes.
    Biochemistry. 1991 Apr 16;30(15):3798-806 PMID: 1707669
  58. Isolation and structural characterization of the Chlamydomonas reinhardtii gene for cytochrome c6. Analysis of the kinetics and metal specificity of its copper-responsive expression.
    J Biol Chem. 1991 Aug 15;266(23):15060-7 PMID: 1714451
  59. Dynamic interplay between two copper-titrating components in the transcriptional regulation of cyt c6.
    EMBO J. 1991 Jun;10(6):1383-9 PMID: 1863287
  60. The transactivator GAL4: co-activators, adaptors and chromatin.
    Bioessays. 1991 May;13(5):241-2 PMID: 1892477
  61. Ferritin gene transcription is regulated by iron in soybean cell cultures.
    Proc Natl Acad Sci U S A. 1991 Sep 15;88(18):8222-6 PMID: 1896472
  62. The Neurospora crassa metallothionein gene. Regulation of expression and chromosomal location.
    J Biol Chem. 1987 May 25;262(15):7363-7 PMID: 2953720
  63. Rat metallothionein-1 structural gene and three pseudogenes, one of which contains 5'-regulatory sequences.
    Mol Cell Biol. 1986 Jan;6(1):302-14 PMID: 3023830
  64. The Cu(II)-repressible plastidic cytochrome c. Cloning and sequence of a complementary DNA for the pre-apoprotein.
    J Biol Chem. 1987 Jul 5;262(19):9062-7 PMID: 3036842
  65. ACE1 regulates expression of the Saccharomyces cerevisiae metallothionein gene.
    Mol Cell Biol. 1988 Jul;8(7):2745-52 PMID: 3043194
  66. Biochemistry of metallothionein.
    Biochemistry. 1988 Nov 15;27(23):8509-15 PMID: 3064814
  67. A DNA segment controlling metal-regulated expression of the Drosophila melanogaster metallothionein gene Mtn.
    Mol Cell Biol. 1987 May;7(5):1710-5 PMID: 3110597
  68. Structure of the rainbow trout metallothionein B gene and characterization of its metal-responsive region.
    Mol Cell Biol. 1988 Oct;8(10):4469-76 PMID: 3185557
  69. Autoregulation of the yeast copper metallothionein gene depends on metal binding.
    J Biol Chem. 1988 Jan 25;263(3):1570-4 PMID: 3275668
  70. Yeast metallothionein and applications in biotechnology.
    Microbiol Rev. 1987 Sep;51(3):351-64 PMID: 3312986
  71. Regulation of expression of an auxin-induced soybean sequence by cadmium.
    J Biol Chem. 1988 May 5;263(13):6442-6 PMID: 3360788
  72. Constitutive and metal-inducible protein:DNA interactions at the mouse metallothionein I promoter examined by in vivo and in vitro footprinting.
    Genes Dev. 1988 Apr;2(4):412-27 PMID: 3371659
  73. Activation in vitro of sequence-specific DNA binding by a human regulatory factor.
    Nature. 1988 Sep 22;335(6188):372-5 PMID: 3419505
  74. Removal of positioned nucleosomes from the yeast PHO5 promoter upon PHO5 induction releases additional upstream activating DNA elements.
    EMBO J. 1986 Oct;5(10):2689-96 PMID: 3536481
  75. Yeast metallothionein function in metal ion detoxification.
    J Biol Chem. 1986 Dec 25;261(36):16895-900 PMID: 3536930
  76. Accurate transcription of mouse metallothionein-I gene in a fractionated nuclear extract from a rat hepatoma.
    J Biol Chem. 1987 Mar 25;262(9):3932-5 PMID: 3558400
  77. Metal-dependent binding of a factor in vivo to the metal-responsive elements of the metallothionein 1 gene promoter.
    Mol Cell Biol. 1987 Oct;7(10):3574-81 PMID: 3683394
  78. Function and autoregulation of yeast copperthionein.
    Science. 1985 May 10;228(4700):685-90 PMID: 3887570
  79. Yeast metallothionein. Sequence and metal-binding properties.
    J Biol Chem. 1985 Nov 25;260(27):14464-70 PMID: 3902832
  80. Superoxide dismutase and oxygen toxicity in a eukaryote.
    J Bacteriol. 1974 Feb;117(2):456-60 PMID: 4590469
  81. Duplicated heavy metal control sequences of the mouse metallothionein-I gene.
    Proc Natl Acad Sci U S A. 1984 Dec;81(23):7392-6 PMID: 6095291
  82. Oxygen toxicity, oxygen radicals, transition metals and disease.
    Biochem J. 1984 Apr 1;219(1):1-14 PMID: 6326753
  83. Copper metallothionein of yeast, structure of the gene, and regulation of expression.
    Proc Natl Acad Sci U S A. 1984 Jun;81(11):3332-6 PMID: 6374656
  84. Transcriptional regulation of the mouse metallothionein-I gene by heavy metals.
    J Biol Chem. 1981 Jun 10;256(11):5712-6 PMID: 7240167
  85. Gene control of coppersensitivity in Saccharomyces.
    Nature. 1955 Oct 29;176(4487):841-2 PMID: 13272707
  86. Nuclear zinc uptake and interactions and metallothionein gene expression are influenced by dietary zinc in rats.
    J Nutr. 1992 Jan;122(1):56-64 PMID: 1370327
  87. Catalytic RNA: a Nobel Prize for small village science.
    New Biol. 1990 Jan;2(1):1-4 PMID: 1706622
  88. Octamania: the POU factors in murine development.
    Trends Genet. 1991 Oct;7(10):323-9 PMID: 1781030
Article Info
Journal
Nucleic acids research
Abbr.
Nucleic Acids Res
ISSN
0305-1048
Published
1992-03-25
Pages
1183-91
Language
English
Region
England
NLM ID
0411011
PMCID
PMC312157
Subset
IM
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