Literature DB >> 1508182

Expression of a yeast metallothionein gene family is activated by a single metalloregulatory transcription factor.

P Zhou1, M S Szczypka, T Sosinowski, D J Thiele.   

Abstract

The opportunistic pathogenic yeast Candida glabrata elicits at least two major responses in the presence of high environmental metal levels: transcriptional induction of the metallothionein gene family by copper and the appearance of small (gamma-Glu-Cys)nGly peptides in the presence of cadmium. On the basis of a trans-activation selection scheme in the baker's yeast Saccharomyces cerevisiae, we previously isolated a C. glabrata gene which encodes a copper-activated DNA-binding protein designated AMT1. AMT1 forms multiple specific DNA-protein complexes with both C. glabrata MT-I and MT-IIa promoter DNA fragments. In this report, we localize and define the AMT1-binding sites in the MT-I and MT-IIa promoters and characterize the mode of AMT1 binding. Furthermore, we demonstrate that the AMT1 protein trans activates both the MT-I and MT-IIa genes in vivo in response to copper and that this activation is essential for high-level copper resistance in C. glabrata. Although AMT1-mediated trans activation of the C. glabrata metallothionein genes is essential for copper resistance, AMT1 is completely dispensable for cadmium tolerance. The distinct function that metallothionein genes have in copper but not cadmium detoxification in C. glabrata is in contrast to the role that metallothionein genes play in tolerance to multiple metals in higher organisms.

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Year:  1992        PMID: 1508182      PMCID: PMC360240          DOI: 10.1128/mcb.12.9.3766-3775.1992

Source DB:  PubMed          Journal:  Mol Cell Biol        ISSN: 0270-7306            Impact factor:   4.272


  47 in total

Review 1.  Metallothionein and the trace minerals.

Authors:  I Bremner; J H Beattie
Journal:  Annu Rev Nutr       Date:  1990       Impact factor: 11.848

2.  Isolation of a metal-activated transcription factor gene from Candida glabrata by complementation in Saccharomyces cerevisiae.

Authors:  P B Zhou; D J Thiele
Journal:  Proc Natl Acad Sci U S A       Date:  1991-07-15       Impact factor: 11.205

3.  Bacterial resistance ATPases: primary pumps for exporting toxic cations and anions.

Authors:  S Silver; G Nucifora; L Chu; T K Misra
Journal:  Trends Biochem Sci       Date:  1989-02       Impact factor: 13.807

4.  ACE1 transcription factor produced in Escherichia coli binds multiple regions within yeast metallothionein upstream activation sequences.

Authors:  C F Evans; D R Engelke; D J Thiele
Journal:  Mol Cell Biol       Date:  1990-01       Impact factor: 4.272

5.  Duplicated heavy metal control sequences of the mouse metallothionein-I gene.

Authors:  A D Carter; B K Felber; M J Walling; M F Jubier; C J Schmidt; D H Hamer
Journal:  Proc Natl Acad Sci U S A       Date:  1984-12       Impact factor: 11.205

6.  A single amino acid change in CUP2 alters its mode of DNA binding.

Authors:  C Buchman; P Skroch; W Dixon; T D Tullius; M Karin
Journal:  Mol Cell Biol       Date:  1990-09       Impact factor: 4.272

7.  ACE1, a copper-dependent transcription factor, activates expression of the yeast copper, zinc superoxide dismutase gene.

Authors:  E B Gralla; D J Thiele; P Silar; J S Valentine
Journal:  Proc Natl Acad Sci U S A       Date:  1991-10-01       Impact factor: 11.205

8.  Disruption analysis of metallothionein-encoding genes in Candida glabrata.

Authors:  R K Mehra; J L Thorvaldsen; I G Macreadie; D R Winge
Journal:  Gene       Date:  1992-05-01       Impact factor: 3.688

9.  ACE2, an activator of yeast metallothionein expression which is homologous to SWI5.

Authors:  G Butler; D J Thiele
Journal:  Mol Cell Biol       Date:  1991-01       Impact factor: 4.272

10.  Copper-induced binding of cellular factors to yeast metallothionein upstream activation sequences.

Authors:  J M Huibregtse; D R Engelke; D J Thiele
Journal:  Proc Natl Acad Sci U S A       Date:  1989-01       Impact factor: 11.205

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  18 in total

Review 1.  Metal-responsive transcription factors that regulate iron, zinc, and copper homeostasis in eukaryotic cells.

Authors:  Julian C Rutherford; Amanda J Bird
Journal:  Eukaryot Cell       Date:  2004-02

2.  Phenotypic switching in Candida glabrata involves phase-specific regulation of the metallothionein gene MT-II and the newly discovered hemolysin gene HLP.

Authors:  S A Lachke; T Srikantha; L K Tsai; K Daniels; D R Soll
Journal:  Infect Immun       Date:  2000-02       Impact factor: 3.441

Review 3.  Charting the travels of copper in eukaryotes from yeast to mammals.

Authors:  Tracy Nevitt; Helena Ohrvik; Dennis J Thiele
Journal:  Biochim Biophys Acta       Date:  2012-02-24

4.  Phenotypic switching in Candida glabrata accompanied by changes in expression of genes with deduced functions in copper detoxification and stress.

Authors:  Thyagarajan Srikantha; Rui Zhao; Karla Daniels; Josh Radke; David R Soll
Journal:  Eukaryot Cell       Date:  2005-08

5.  Heavy metal tolerance in marine strains of Yarrowia lipolytica.

Authors:  Ashok Bankar; Smita Zinjarde; Manisha Shinde; Gita Gopalghare; Ameeta Ravikumar
Journal:  Extremophiles       Date:  2018-03-29       Impact factor: 2.395

6.  Compilation of sequence-specific DNA-binding proteins implicated in transcriptional control in fungi.

Authors:  S S Dhawale; A C Lane
Journal:  Nucleic Acids Res       Date:  1993-12-11       Impact factor: 16.971

7.  Identification and analysis of a Saccharomyces cerevisiae copper homeostasis gene encoding a homeodomain protein.

Authors:  S A Knight; K T Tamai; D J Kosman; D J Thiele
Journal:  Mol Cell Biol       Date:  1994-12       Impact factor: 4.272

8.  Purification of mouse MEP-1, a nuclear protein which binds to the metal regulatory elements of genes encoding metallothionein.

Authors:  S Labbé; L Larouche; D Mailhot; C Séguin
Journal:  Nucleic Acids Res       Date:  1993-04-11       Impact factor: 16.971

Review 9.  Production of metallothionein in copper- and cadmium-resistant strains of Saccharomyces cerevisiae.

Authors:  H Tohoyama; M Inouhe; M Joho; T Murayama
Journal:  J Ind Microbiol       Date:  1995-02

10.  Autoactivation by a Candida glabrata copper metalloregulatory transcription factor requires critical minor groove interactions.

Authors:  K A Koch; D J Thiele
Journal:  Mol Cell Biol       Date:  1996-02       Impact factor: 4.272

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