Chow W Y, Berg D E
Department of Microbiology and Immunology, Washington University Medical School, Saint Louis, MO 63110.
Proc Natl Acad Sci U S A. 1988 Sep;85(17):6468-72. doi: 10.1073/pnas.85.17.6468.
Conditional lethal mutations are valuable for analyzing essential genes. We describe here a derivative of the bacterial transposon Tn5 called Tn5tac1 and its use in an innovative strategy for making mutations with conditional phenotypes. The 4.6-kilobase Tn5tac1 element contains a strong, regulatable, outward-facing promoter (Ptac) near one end and is polar on the expression of distal genes when the inducer of Ptac [isopropyl beta-D-thiogalactoside (IPTG)] is absent. Our results show that two unusual conditional mutant phenotypes can result from Tn5tac1 insertion in Escherichia coli: one is corrected by IPTG while the other is induced by IPTG. The broad host range of Tn5 and the conditional nature of these mutant phenotypes makes Tn5tac1 well suited for identifying essential genes in diverse bacterial species.
条件致死突变对于分析必需基因很有价值。我们在此描述一种名为Tn5tac1的细菌转座子Tn5的衍生物及其在产生具有条件表型突变的创新策略中的应用。4.6千碱基的Tn5tac1元件在一端附近含有一个强的、可调控的外向启动子(Ptac),当Ptac的诱导剂[异丙基-β-D-硫代半乳糖苷(IPTG)]不存在时,它对远端基因的表达具有极性。我们的结果表明,Tn5tac1插入大肠杆菌可导致两种不寻常的条件突变表型:一种可被IPTG纠正,而另一种则由IPTG诱导。Tn5广泛的宿主范围以及这些突变表型的条件性质使得Tn5tac1非常适合于鉴定不同细菌物种中的必需基因。