Literature DB >> 9111349

Reversible activation of mouse metal response element-binding transcription factor 1 DNA binding involves zinc interaction with the zinc finger domain.

T P Dalton1, D Bittel, G K Andrews.   

Abstract

The DNA-binding activity of the Zn finger protein metal response element-binding transcription factor 1 (MTF-1) was rapidly induced both in vivo in mouse Hepa cells, canine MDCK, and human HeLa cells after incubation in medium containing zinc and in vitro in whole-cell extracts to which zinc was added. Acquisition of DNA-binding capacity in the presence of free zinc was temperature and time dependent and did not occur at 4 degrees C. In contrast, activated MTF-1 binding to the metal response element occurred at 4 degrees C. After Zn activation, mouse MTF-1 binding activity was more sensitive to EDTA and was stabilized by DNA binding relative to the Zn finger transcription factor Sp1. After dilution of nuclear or whole-cell extracts from Zn-treated cells and incubation at 37 degrees C, mouse MTF-1 DNA-binding activity was no longer detected but could be completely reconstituted by the subsequent readdition of zinc. In vitro-synthesized, recombinant mouse MTF-1 displayed a similar, reversible temperature- and Zn-dependent activation of DNA-binding activity. Analysis of deletion mutants of recombinant MTF-1 suggests that the Zn finger domain is important for the Zn-dependent activation of DNA-binding capacity. Thus, mouse MTF-1 functions as a reversibly activated sensor of free zinc pools in the cell.

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Year:  1997        PMID: 9111349      PMCID: PMC232129          DOI: 10.1128/MCB.17.5.2781

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


  34 in total

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Authors:  M R Briggs; J T Kadonaga; S P Bell; R Tjian
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Authors:  G W Stuart; P F Searle; R D Palmiter
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Authors:  P R Mueller; S J Salser; B Wold
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Authors:  V C Culotta; D H Hamer
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Authors:  G W Stuart; P F Searle; H Y Chen; R L Brinster; R D Palmiter
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Authors:  G Westin; W Schaffner
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Authors:  R Heuchel; F Radtke; O Georgiev; G Stark; M Aguet; W Schaffner
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  27 in total

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Review 9.  A potential role for alterations of zinc and zinc transport proteins in the progression of Alzheimer's disease.

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10.  Gene- and cell-type-specific effects of signal transduction cascades on metal-regulated gene transcription appear to be independent of changes in the phosphorylation of metal-response-element-binding transcription factor-1.

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