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A Novel Method for Generating Nested Deletions Using the in Vitro Bacteriophage T3 DNA Packaging System

机译:一种使用体外噬菌体T3 DNA包装系统产生嵌套缺失的新方法

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To sequence a DNA segment inserted into a cosmid vector under the directed sequencing strategy, we established a simple and rapid method for generating nested deletions which uses the in vitro packaging system of bacteriophage T3 DNA. The principle is based on the previous finding that this system can translocate any linear double-stranded DNA up to 40 kb into the phage capsid in a time-dependent manner and the encapsulated DNA becomes DNase-resistant. For this purpose, we constructed a cosmid vector that carries two different antibiotic selection markers at both sides of the multiple cloning site, and after insertion of a DNA segment, the clone was linearized by λ-terminase at the cos site. After the packaging reaction in vitro followed by DNase treatment, the encapsulated DNA was introduced into Escherichia coli cells to give clones with unidirectional deletions by differential antibiotic selection. Restriction and sequence analyses of deletion clones demonstrated that an ordered set of clones with nested deletions, ranging from less than 1 kb to 25 kb, was created from either the end of the DNA segment. Thus, nested deletion clones that cover the entire region of a ~40-kb cosmid insert can be obtained by a single packaging reaction, and its restriction map can be simultaneously obtained.
机译:为了在定向测序策略下对插入粘粒载体中的DNA片段进行测序,我们建立了一种简单快速的方法来产生嵌套缺失,该方法使用了噬菌体T3 DNA的体外包装系统。该原理基于先前的发现,该系统可以以时间依赖的方式将任何最大40 kb的线性双链DNA转移到噬菌体衣壳中,并且封装的DNA变得耐DNase。为此,我们构建了一个粘粒载体,该质粒在多重克隆位点的两侧均带有两个不同的抗生素选择标记,在插入DNA片段后,克隆通过λ末端酶在cos位点线性化。体外包装反应后,经DNase处理后,将包囊的DNA引入大肠杆菌细胞,通过差异抗生素选择获得具有单向缺失的克隆。缺失克隆的限制性和序列分析表明,从DNA片段的任一末端产生了具有嵌套缺失(范围小于1 kb至25 kb)的有序克隆。因此,可以通过一次包装反应获得覆盖〜40kb粘粒插入物整个区域的嵌套缺失克隆,并可以同时获得其限制性酶切图。

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