Nanassy O Z, Hughes K T
Department of Microbiology, University of Washington, Seattle, Washington 98195, USA.
J Bacteriol. 2001 Jan;183(1):28-35. doi: 10.1128/JB.183.1.28-35.2001.
A previous genetic screen was designed to separate Hin recombinase mutants into distinct classes based on the stage in the recombination reaction at which they are blocked (O. Nanassy, Zoltan, and K. T. Hughes, Genetics 149:1649-1663, 1998). One class of DNA binding-proficient, recombination-deficient mutants was predicted by genetic classification to be defective in the step prior to invertasome formation. Based on the genetic criteria, mutants from this class were also inferred to be defective in interactions with Fis. In order to understand how the genetic classification relates to individual biochemical steps in the recombination reaction these mutants, R123Q, T124I, and A126T, were purified and characterized for DNA cleavage and recombination activities. Both the T124I and A126T mutants were partially active, whereas the R123Q mutant was inactive. The A126T mutant was not as defective for recombination as the T124I allele and could be partially rescued for recombination both in vivo and in vitro by increasing the concentration of Fis protein. Rescue of the A126T allele required the Fis protein to be DNA binding proficient. A model for a postsynaptic role for Fis in the inversion reaction is presented.
先前的基因筛选旨在根据Hin重组酶突变体在重组反应中被阻断的阶段,将其分为不同类别(O. Nanassy、佐尔坦和K. T. 休斯,《遗传学》149:1649 - 1663,1998年)。根据基因分类预测,一类DNA结合能力正常但重组缺陷的突变体在倒转体形成之前的步骤中存在缺陷。基于遗传标准,还推断出该类别的突变体在与Fis的相互作用中存在缺陷。为了了解这种基因分类与重组反应中各个生化步骤的关系,对这些突变体R123Q、T124I和A126T进行了纯化,并对其DNA切割和重组活性进行了表征。T124I和A126T突变体均具有部分活性,而R123Q突变体无活性。A126T突变体在重组方面的缺陷不如T124I等位基因严重,并且通过增加Fis蛋白的浓度,其在体内和体外的重组均可得到部分挽救。挽救A126T等位基因需要Fis蛋白具有DNA结合能力。本文提出了Fis在倒转反应中突触后作用的模型。