Sadowski P D
Department of Molecular and Medical Genetics, University of Toronto, Ontario, Canada.
FASEB J. 1993 Jun;7(9):760-7. doi: 10.1096/fasebj.7.9.8392474.
Genetic recombination plays a key role in the life of organisms as diverse as bacteriophages and humans. Contrary to our idea that chromosomes are stable structures, studies of recombination over the past few decades have shown that in fact DNA replicons are remarkably plastic, undergoing frequent recombination-induced rearrangements. This review summarizes our recent knowledge of the biochemistry of the two major classes of site-specific recombination: 1) transpositional recombination, and 2) conservative site-specific recombination.
基因重组在诸如噬菌体和人类等多种多样的生物体生命过程中起着关键作用。与我们认为染色体是稳定结构的观点相反,过去几十年对重组的研究表明,实际上DNA复制子具有显著的可塑性,会频繁发生重组诱导的重排。本综述总结了我们最近对两类主要位点特异性重组生物化学的认识:1)转座重组,以及2)保守位点特异性重组。