Literature DB >> 12736264

CCHX zinc finger derivatives retain the ability to bind Zn(II) and mediate protein-DNA interactions.

Raina J Y Simpson1, Edward D Cram, Robert Czolij, Jacqueline M Matthews, Merlin Crossley, Joel P Mackay.   

Abstract

Classical (CCHH) zinc fingers are among the most common protein domains found in eukaryotes. They function as molecular recognition elements that mediate specific contact with DNA, RNA, or other proteins and are composed of a betabetaalpha fold surrounding a single zinc ion that is ligated by two cysteine and two histidine residues. In a number of variant zinc fingers, the final histidine is not conserved, and in other unrelated zinc binding domains, residues such as aspartate can function as zinc ligands. To test whether the final histidine is required for normal folding and the DNA-binding function of classical zinc fingers, we focused on finger 3 of basic Krüppel-like factor. The structure of this domain was determined using NMR spectroscopy and found to constitute a typical classical zinc finger. We generated a panel of substitution mutants at the final histidine in this finger and found that several of the mutants retained some ability to fold in the presence of zinc. Consistent with this result, we showed that mutation of the final histidine had only a modest effect on DNA binding in the context of the full three-finger DNA-binding domain of basic Krüppel-like factor. Further, the zinc binding ability of one of the point mutants was tested and found to be indistinguishable from the wild-type domain. These results suggest that the final zinc chelating histidine is not an essential feature of classical zinc fingers and have implications for zinc finger evolution, regulation, and the design of experiments testing the functional roles of these domains.

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Year:  2003        PMID: 12736264     DOI: 10.1074/jbc.M211146200

Source DB:  PubMed          Journal:  J Biol Chem        ISSN: 0021-9258            Impact factor:   5.157


  19 in total

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4.  Discovery of small molecule inhibitors to Krüppel-like factor 10 (KLF10): implications for modulation of T regulatory cell differentiation.

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7.  The structural role of the zinc ion can be dispensable in prokaryotic zinc-finger domains.

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8.  Pentaprobe: a comprehensive sequence for the one-step detection of DNA-binding activities.

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9.  Nizp1, a novel multitype zinc finger protein that interacts with the NSD1 histone lysine methyltransferase through a unique C2HR motif.

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10.  Stage-specific repression by the EKLF transcriptional activator.

Authors:  Xiaoyong Chen; James J Bieker
Journal:  Mol Cell Biol       Date:  2004-12       Impact factor: 4.272

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