Cooperative DNA binding by proteins through DNA shape complementarity

Author:

Hancock Stephen P12,Cascio Duilio3,Johnson Reid C14

Affiliation:

1. Department of Biological Chemistry, David Geffen School of Medicine at the University of California at Los Angeles, Los Angeles, CA 90095-1737, USA

2. Department of Chemistry, Towson University, 8000 York Rd., Towson, MD 21252, USA

3. University of California at Los Angeles-Department of Energy Institute of Genomics and Proteomics, University of California at Los Angeles, Los Angeles, CA 90095-1570, USA

4. Molecular Biology Institute, University of California at Los Angeles, Los Angeles, CA 90095, USA

Abstract

Abstract Localized arrays of proteins cooperatively assemble onto chromosomes to control DNA activity in many contexts. Binding cooperativity is often mediated by specific protein–protein interactions, but cooperativity through DNA structure is becoming increasingly recognized as an additional mechanism. During the site-specific DNA recombination reaction that excises phage λ from the chromosome, the bacterial DNA architectural protein Fis recruits multiple λ-encoded Xis proteins to the attR recombination site. Here, we report X-ray crystal structures of DNA complexes containing Fis + Xis, which show little, if any, contacts between the two proteins. Comparisons with structures of DNA complexes containing only Fis or Xis, together with mutant protein and DNA binding studies, support a mechanism for cooperative protein binding solely by DNA allostery. Fis binding both molds the minor groove to potentiate insertion of the Xis β-hairpin wing motif and bends the DNA to facilitate Xis-DNA contacts within the major groove. The Fis-structured minor groove shape that is optimized for Xis binding requires a precisely positioned pyrimidine-purine base-pair step, whose location has been shown to modulate minor groove widths in Fis-bound complexes to different DNA targets.

Funder

National Institutes of Health

Department of Energy

National Center for Research Resources

National Institutes of General Medical Sciences

Publisher

Oxford University Press (OUP)

Subject

Genetics

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3. The lambda integrase site-specific recombination pathway;Landy;Microb. Spectr.,2015

4. Efficient excision of phage lambda from the Escherichia coli chromosome requires the Fis protein;Ball;J. Bacteriol.,1991

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