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酵母2μm质粒的FLP重组酶对DNA的识别。FLP结合位点的突变分析。

DNA recognition by the FLP recombinase of the yeast 2 mu plasmid. A mutational analysis of the FLP binding site.

作者信息

Senecoff J F, Rossmeissl P J, Cox M M

机构信息

Department of Biochemistry, College of Agricultural and Life Sciences, University of Wisconsin-Madison 53706.

出版信息

J Mol Biol. 1988 May 20;201(2):405-21. doi: 10.1016/0022-2836(88)90147-7.

Abstract

The 2 mu plasmid of the yeast Saccharomyces cerevisiae encodes a site-specific recombination system consisting of the FLP protein and two inverted recombination sites on the plasmid. The minimal fully functional substrate for in-vitro recombination in this system consists of two FLP protein binding sites separated by an eight base-pair spacer sequence. We have used site-directed mutagenesis to generate every possible mutation (36 in all) within 11 base-pairs of one FLP protein binding site and the base-pair immediately flanking it. The base-pairs within the binding site can be separated into three classes on the basis of these results. Thirty of the 36 sequence changes, including all three at seven different positions (class I) produce a negligible or modest effect on FLP protein-promoted recombination. In particular, most transition mutations are well-tolerated in this system. In only one case do all three possible mutations produce large effects (class II). At three positions, clustered near the site at which DNA is cleaved by FLP protein, one of the two possible transversions produces a large effect on recombination, while the other two changes produce modest effects (class III). For seven mutants for which FLP protein binding was measured, a direct correlation between decreases in recombination activity and in binding was observed. Positive effects on the reaction potential of mutant sites are observed when the other FLP binding site in a single recombination site is unaltered or when the second recombination site in a reaction is wild-type. This suggests a functional interaction between FLP binding sites both in cis and in trans. When two mutant recombination sites (each with 1 altered FLP binding site) are recombined, the relative orientation of the mutations (parallel or antiparallel) has no effect on the result. These results provide an extensive substrate catalog to complement future studies in this system.

摘要

酿酒酵母的2μm质粒编码一个位点特异性重组系统,该系统由FLP蛋白和质粒上的两个反向重组位点组成。该系统中用于体外重组的最小全功能底物由两个被8个碱基对间隔序列隔开的FLP蛋白结合位点组成。我们利用定点诱变在一个FLP蛋白结合位点及其紧邻的一个碱基对的11个碱基对内产生了所有可能的突变(共36个)。根据这些结果,结合位点内的碱基对可分为三类。36个序列变化中的30个,包括7个不同位置上的所有3个变化(I类),对FLP蛋白促进的重组产生的影响可忽略不计或较小。特别是,大多数转换突变在该系统中耐受性良好。只有一种情况是所有三个可能的突变都产生很大影响(II类)。在FLP蛋白切割DNA的位点附近聚集的三个位置上,两种可能的颠换之一对重组产生很大影响,而另外两个变化产生较小影响(III类)。对于7个测量了FLP蛋白结合的突变体,观察到重组活性降低与结合降低之间存在直接相关性。当单个重组位点中的另一个FLP结合位点未改变或反应中的第二个重组位点为野生型时,观察到突变位点对反应潜能有正向影响。这表明顺式和反式的FLP结合位点之间存在功能相互作用。当两个突变重组位点(每个都有1个改变的FLP结合位点)进行重组时,突变的相对方向(平行或反平行)对结果没有影响。这些结果提供了一个广泛的底物目录,以补充该系统未来的研究。

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