Amundsen S K, Neiman A M, Thibodeaux S M, Smith G R
Fred Hutchinson Cancer Research Center, Seattle, Washington 98104.
Genetics. 1990 Sep;126(1):25-40. doi: 10.1093/genetics/126.1.25.
RecBCD enzyme of Escherichia coli is required for the major pathway of homologous recombination following conjugation. The enzyme has an ATP-dependent DNA unwinding activity, ATP-dependent single-stranded (ss) and double-stranded (ds) DNA exonuclease activities, and an activity that makes a ss DNA endonucleolytic cut near Chi sites. We have isolated and characterized ten mutations that reduced recombination proficiency and inactivated some, but not all, activities of RecBCD enzyme. One class of mutants had weak ds DNA exonuclease activity and lacked Chi-dependent DNA cleavage activity, a second class lacked only Chi-dependent DNA cleavage activity, and a third class retained all activities tested. The properties of these mutants indicate that the DNA unwinding and ss DNA exonuclease activities of the RecBCD enzyme are not sufficient for recombination. Furthermore, they suggest that the Chi-dependent DNA cleavage activity or another, as yet unidentified activity or both are required for recombination. The roles of the RecBCD enzymatic activities in recombination and exclusion of foreign DNA are discussed in light of the properties of these and other recBCD mutations.
大肠杆菌的RecBCD酶是接合后同源重组主要途径所必需的。该酶具有ATP依赖的DNA解旋活性、ATP依赖的单链(ss)和双链(ds)DNA外切核酸酶活性,以及在Chi位点附近进行单链DNA内切核酸酶切割的活性。我们分离并鉴定了十个降低重组能力且使RecBCD酶的部分而非全部活性失活的突变。一类突变体具有较弱的双链DNA外切核酸酶活性且缺乏Chi依赖的DNA切割活性,第二类仅缺乏Chi依赖的DNA切割活性,第三类保留了所有测试的活性。这些突变体的特性表明,RecBCD酶的DNA解旋和单链DNA外切核酸酶活性对于重组而言并不充分。此外,它们提示Chi依赖的DNA切割活性或另一种尚未明确的活性或两者对于重组都是必需的。根据这些及其他recBCD突变的特性,讨论了RecBCD酶活性在重组和外源DNA排除中的作用。