Purification and Characterization of Bacteriophage P22 Xis Protein

Author:

Mattis Aras N.1,Gumport Richard I.2,Gardner Jeffrey F.3

Affiliation:

1. Department of Pathology, University of California, San Francisco, San Francisco, California

2. Department of Biochemistry and College of Medicine, University of Illinois at Urbana-Champaign, Urbana, Illinois

3. Department of Microbiology, University of Illinois at Urbana-Champaign, Urbana, Illinois

Abstract

ABSTRACT The temperate bacteriophages λ and P22 share similarities in their site-specific recombination reactions. Both require phage-encoded integrase (Int) proteins for integrative recombination and excisionase (Xis) proteins for excision. These proteins bind to core-type, arm-type, and Xis binding sites to facilitate the reaction. λ and P22 Xis proteins are both small proteins (λ Xis, 72 amino acids; P22 Xis, 116 amino acids) and have basic isoelectric points (for P22 Xis, 9.42; for λ Xis, 11.16). However, the P22 Xis and λ Xis primary sequences lack significant similarity at the amino acid level, and the linear organizations of the P22 phage attachment site DNA-binding sites have differences that could be important in quaternary intasome structure. We purified P22 Xis and studied the protein in vitro by means of electrophoretic mobility shift assays and footprinting, cross-linking, gel filtration stoichiometry, and DNA bending assays. We identified one protected site that is bent approximately 137 degrees when bound by P22 Xis. The protein binds cooperatively and at high protein concentrations protects secondary sites that may be important for function. Finally, we aligned the attP arms containing the major Xis binding sites from bacteriophages λ, P22, L5, HP1, and P2 and the conjugative transposon Tn 916 . The similarity in alignments among the sites suggests that Xis-containing bacteriophage arms may form similar structures.

Publisher

American Society for Microbiology

Subject

Molecular Biology,Microbiology

Reference37 articles.

1. Abbani, M. A., C. V. Papagiannis, M. D. Sam, D. Cascio, R. C. Johnson, and R. T. Clubb. 2007. Structure of the cooperative Xis-DNA complex reveals a micronucleoprotein filament that regulates phage lambda intasome assembly. Proc. Natl. Acad. Sci. USA 104 : 2109-2114.

2. Gel filtration principles and methods. 2002

3. Current protocols in molecular biology. 1987

4. Short protocols in molecular biology: a compendium of methods from current protocols in molecular biology 1999

5. Azaro, M. A., and A. Landy. 2002. Lambda integrase and the lambda Int family, p. 118-148. In N. L. Craig, R. Craigie, M. Gellert, and A. M. Lambowitz (ed.), Mobile DNA II. ASM Press, Washington, DC.

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