Interactions between Integrase and Excisionase in the Phage Lambda Excisive Nucleoprotein Complex

Author:

Cho Eun Hee1,Gumport Richard I.2,Gardner Jeffrey F.3

Affiliation:

1. Department of Science Education, Chosun University, Kwangju, Korea

2. Department of Biochemistry and College of Medicine

3. Department of Microbiology, University of Illinois, Urbana, Illinois

Abstract

ABSTRACT Bacteriophage lambda site-specific recombination comprises two overall reactions, integration into and excision from the host chromosome. Lambda integrase (Int) carries out both reactions. During excision, excisionase (Xis) helps Int to bind DNA and introduces a bend in the DNA that facilitates formation of the proper excisive nucleoprotein complex. The carboxyl-terminal α-helix of Xis is thought to interact with Int through direct protein-protein interactions. In this study, we used gel mobility shift assays to show that the amino-terminal domain of Int maintained cooperative interactions with Xis. This finding indicates that the amino-terminal arm-type DNA binding domain of Int interacts with Xis.

Publisher

American Society for Microbiology

Subject

Molecular Biology,Microbiology

Reference26 articles.

1. Azaro M. A. and A. Landy. 2002. The integration/excision cycle of λ and other bacteriophages p. 118-148. In N. L. Craig et al. (ed.) Mobile DNA II. ASM Press Washington D.C.

2. Bauer, C. E., S. D. Hesse, R. I. Gumport, and J. F. Gardner. 1986. Mutational analysis of integrase arm type binding sites of bacteriophage lambda. J. Mol. Biol.121:179-192.

3. Bushman, W., S. Yin, L. Thio, and A. Landy. 1984. Determinants of directionality in lambda site-specific recombination. Cell39:699-707.

4. Cheng, Q., B. M. Swalla, M. Beck, R. Alcaraz, Jr., R. I. Gumport, and J. F. Gardner. 2000. Specificity determinants for bacteriophage Hong Kong 022 integrase: analysis of mutants with relaxed core-binding specificities. Mol. Microbiol.36:424-436.

5. Characterization of Bacteriophage Lambda Excisionase Mutants Defective in DNA Binding

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