Rüfer Andreas W, Sauer Brian
Stowers Institute for Medical Research, 1000 East 50th Street, Kansas City, MO 64110, USA.
Nucleic Acids Res. 2002 Jul 1;30(13):2764-71. doi: 10.1093/nar/gkf399.
A first step in Cre-mediated site-specific DNA recombination is binding to the two 13 bp repeats of the 34 bp site loxP. Several nucleotides within loxP do not directly contact the bound enzyme, yet mutation at two of these base pairs, at positions 11 and 12 in each repeat, results in a 100 000-fold reduction in recombination. To understand better how Cre selects DNA sequences for recombination, we combined DNA shuffling mutagenesis and a forward selection strategy to obtain Cre mutants that recombine at 100% efficiency a mutant loxK2 site carrying these dinucleotide changes. The role of the several mutations found in these Cre isolates was analyzed both in vivo and biochemically with purified enzymes. A single mutation at E262 accounts for most but not all of the enhanced activity at loxK2. Secondary mutations act in one or more of three ways: enhancement of loxK2 binding, accelerated synthesis of Cre in vivo or faster DNA recombination at the alternative spacer region present in loxK2. Systematic analysis of all 20 natural amino acids at position E262 shows that the naturally occurring glutamate residue at this position provides the optimal balance of efficiency of recombination at loxP and maximal discrimination against loxK2.
Cre介导的位点特异性DNA重组的第一步是与34bp位点loxP的两个13bp重复序列结合。loxP内的几个核苷酸不直接与结合的酶接触,但在每个重复序列的第11和12位的这两个碱基对发生突变,会导致重组效率降低100000倍。为了更好地理解Cre如何选择用于重组的DNA序列,我们结合了DNA改组诱变和正向选择策略,以获得能以100%的效率重组携带这些二核苷酸变化的突变型loxK2位点的Cre突变体。对这些Cre分离株中发现的几个突变的作用进行了体内分析,并使用纯化的酶进行了生化分析。E262处的单个突变占loxK2增强活性的大部分,但不是全部。二级突变以三种方式中的一种或多种起作用:增强loxK2结合、体内加速Cre的合成或在loxK2中存在的替代间隔区更快地进行DNA重组。对E262位置的所有20种天然氨基酸进行系统分析表明,该位置天然存在的谷氨酸残基在loxP处的重组效率和对loxK2的最大区分度之间提供了最佳平衡。