Stahl F W, Thomason L C, Siddiqi I, Stahl M M
Institute of Molecular Biology, University of Oregon, Eugene 97403-1229.
Genetics. 1990 Nov;126(3):519-33. doi: 10.1093/genetics/126.3.519.
When one of two infecting lambda phage types in a replication-blocked cross is chi + and DNA packaging is divorced from the RecBCD-chi interaction, complementary chi-stimulated recombinants are recovered equally in mass lysates only if the chi + parent is in excess in the infecting parental mixture. Otherwise, the chi 0 recombinant is recovered in excess. This observation implies that, along with the chi 0 chromosome, two chi + parent chromosomes are involved in the formation of each chi + recombinant. The trimolecular nature of chi +-stimulated recombination is manifest in recombination between lambda and a plasmid. When lambda recombines with a plasmid via the RecBCD pathway, the resulting chromosome has an enhanced probability of undergoing lambda x lambda recombination in the interval into which the plasmid was incorporated. These two observations support a model in which DNA is degraded by Exo V from cos, the sequence that determines the end of packaged lambda DNA and acts as point of entry for RecBCD enzyme, to chi, the DNA sequence that stimulates the RecBCD enzyme to effect recombination. The model supposes that chi acts by ejecting the RecD subunit from the RecBCD enzyme with two consequences. (1) ExoV activity is blocked leaving a highly recombinagenic, frayed duplex end near chi, and (2) as the enzyme stripped of the RecD subunit travels beyond chi it is competent to catalyze reciprocal recombination.
在复制受阻的杂交中,当两种感染性λ噬菌体类型之一为χ⁺型,且DNA包装与RecBCD-χ相互作用分离时,只有当χ⁺亲本在感染性亲本混合物中过量时,互补的χ刺激重组体才能在大量裂解物中以相等的比例回收。否则,χ⁰重组体将过量回收。这一观察结果表明,除了χ⁰染色体外,两条χ⁺亲本染色体参与了每个χ⁺重组体的形成。χ⁺刺激重组的三分子性质在λ噬菌体与质粒之间的重组中表现出来。当λ噬菌体通过RecBCD途径与质粒重组时,所得染色体在质粒插入区间内发生λ噬菌体×λ噬菌体重组的概率增加。这两个观察结果支持了一个模型,即DNA被外切酶V从cos(决定包装的λ噬菌体DNA末端并作为RecBCD酶进入点的序列)降解至χ(刺激RecBCD酶进行重组的DNA序列)。该模型假设χ通过从RecBCD酶中弹出RecD亚基发挥作用,产生两个结果。(1)外切酶V活性被阻断,在χ附近留下高度重组的、有缺口的双链末端,(2)当去除RecD亚基的酶移动到χ之外时,它有能力催化相互重组。