Annealing vs. Invasion in Phage λ Recombination

Author:

Stahl Mary M1,Thomason Lynn1,Poteete Anthony R2,Tarkowski Trudee1,Kuzminov Andrei1,Stahl Franklin W1

Affiliation:

1. Institute of Molecular Biology, University of Oregon, Eugene, Oregon 97403-1229

2. University of Massachusetts Medical School, Department of Molecular Genetics and Microbiology, Worcester, Massachusetts 01605

Abstract

Genetic recombination catalyzed by λ's Red pathway was studied in rec  + and recA mutant bacteria by examining both intracellular λ DNA and mature progeny particles. Recombination of nonreplicating phage chromosomes was induced by double-strand breaks delivered at unique sites in vivo. In rec  + cells, cutting only one chromosome gave nearly maximal stimulation of recombination; the recombinants formed contained relatively short hybrid regions, suggesting strand invasion. In contrast, in recA mutant cells, cutting the two parental chromosomes at non-allelic sites was required for maximal stimulation; the recombinants formed tended to be hybrid over the entire region between the two cuts, implying strand annealing. We conclude that, in the absence of RecA and the presence of non-allelic DNA ends, the Red pathway of λ catalyzes recombination primarily by annealing.

Publisher

Oxford University Press (OUP)

Subject

Genetics

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