Henikoff S
Gene. 1984 Jun;28(3):351-9. doi: 10.1016/0378-1119(84)90153-7.
A method is described for the rapid generation and cloning of deletion derivatives well-suited for the sequencing of long stretches of DNA. This method is based on two useful features of exonuclease III: (1) processive digestion at a very uniform rate and (2) failure to initiate digestion at DNA ends with four-base 3'-protrusions. The method was applied to a 4570-bp Drosophila genomic DNA fragment cloned in the single-stranded phage vector M 13mp18. An ordered set of deletion clones was made by first cutting replicative form(RF) DNA with two restriction enzymes in the polylinker region of the vector between the Drosophila DNA and the sequencing primer binding site. One enzyme left a four-base 3'-protrusion that protected the remainder of the vector from exonuclease III attack, allowing unidirectional digestion of the insert sequence from the 5'-protruding end left by the other enzyme. Aliquots were removed at uniform intervals, treated with S1 nuclease, Klenow DNA polymerase, T4 DNA ligase, and then used to transfect competent cells. Most of the resulting clones derived from each aliquot were deleted to a predicted extent with only slight scatter, even for deletions of more than 4 kb. The method permits efficient isolation of clusters of deletion breakpoints within small preselected regions of large DNA segments, allowing nonrandom sequence analysis.
本文描述了一种快速生成和克隆缺失衍生物的方法,该方法非常适合对长片段DNA进行测序。此方法基于核酸外切酶III的两个有用特性:(1)以非常均匀的速率进行连续消化;(2)不能在具有四个碱基3'突出端的DNA末端起始消化。该方法应用于克隆在单链噬菌体载体M 13mp18中的一个4570 bp的果蝇基因组DNA片段。通过首先用两种限制酶切割载体多克隆位点区域中的复制型(RF)DNA来构建一组有序的缺失克隆,该区域位于果蝇DNA和测序引物结合位点之间。一种酶留下一个四碱基3'突出端,保护载体的其余部分免受核酸外切酶III的攻击,从而允许从另一种酶留下的5'突出端单向消化插入序列。以均匀间隔取出等分试样,用S1核酸酶、Klenow DNA聚合酶、T4 DNA连接酶处理,然后用于转染感受态细胞。即使对于超过4 kb的缺失,从每个等分试样产生的大多数克隆也被删除到预测的程度,且只有轻微的分散。该方法允许在大DNA片段的小预选区域内高效分离缺失断点簇,从而进行非随机序列分析。