Zinc-Dependent Structure of a Single-Finger Domain of Yeast ADR1

Grace Párraga(University of Washington), Suzanna J. Horvath(California Institute of Technology), Amur Eisen(University of Washington), Wayne E. Taylor(University of Washington), Leroy Hood(California Institute of Technology), Elton T. Young(University of Washington), Rachel E. Klevit(University of Washington)
Science
September 16, 1988
Cited by 314

Abstract

In the proposed "zinc finger" DNA-binding motif, each repeat unit binds a zinc metal ion through invariant Cys and His residues and this drives the folding of each 30-residue unit into an independent nucleic acid-binding domain. To obtain structural information, we synthesized single and double zinc finger peptides from the yeast transcription activator ADR1, and assessed the metal-binding and DNA-binding properties of these peptides, as well as the solution structure of the metal-stabilized domains, with the use of a variety of spectroscopic techniques. A single zinc finger can exist as an independent structure sufficient for zinc-dependent DNA binding. An experimentally determined model of the single finger is proposed that is consistent with circular dichroism, one- and two-dimensional nuclear magnetic resonance, and visual spectroscopy of the single-finger peptide reconstituted in the presence of zinc.


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