首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Construction of Tn5 lac a transposon that fuses lacZ expression to exogenous promoters and its introduction into Myxococcus xanthus.
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Construction of Tn5 lac a transposon that fuses lacZ expression to exogenous promoters and its introduction into Myxococcus xanthus.

机译:Tn5 lac(一种将lacZ表达融合到外源启动子上的转座子)的构建并将其引入粘菌。

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摘要

A promoterless trp-lac fusion fragment was inserted near one end of the bacterial transposon Tn5 in the correct orientation to fuse lacZ gene expression to promoters outside Tn5. The resulting transposon, Tn5 lac, retains the kanamycin-resistance gene of Tn5 and transposes in Escherichia coli at 6% the frequency of Tn5 to many different sites in a bacteriophage lambda target. Expression of beta-galactosidase, the product of the lacZ gene, from Tn5 lac insertions in phage lambda depends both on insertion into a transcription unit in the correct orientation and on the regulation of the promoter of the transcription unit, verifying that by transposition Tn5 lac can fuse lacZ expression to outside promoters. An insertion of Tn5 lac in bacteriophage P1 was isolated and used to introduce Tn5 lac into Myxococcus xanthus, a bacterium that undergoes multicellular development. Stable kanamycin-resistant transductants are obtained that contain no P1 DNA sequences but have Tn5 lac inserted at different sites in the Myxococcus chromosome. Individual transductants express different levels of beta-galactosidase. A chromogenic substrate of beta-galactosidase, 5-bromo-4-chloro-3-indolyl beta-D-galactoside, is toxic in Myxococcus when cleaved in large amounts. In principle, Tn5 lac could be used to assay transcription in any bacterium in which Tn5 can transpose and beta-galactosidase can be measured.
机译:将无启动子的trp-lac融合片段以正确的方向插入细菌转座子Tn5的一端附近,以将lacZ基因表达融合到Tn5外部的启动子上。产生的转座子Tn5 lac保留了Tn5的卡那霉素抗性基因,并以6%的Tn5频率在大肠杆菌中转染到噬菌体λ靶中的许多不同位点。来自噬菌体λ中Tn5 lac插入的lacZ基因产物β-半乳糖苷酶的表达不仅取决于以正确方向插入转录单元,还取决于转录单元启动子的调控,从而证实通过转位Tn5 lac可以将lacZ表达融合到外部启动子上。分离出在噬菌体P1中的Tn5 lac插入物,并用于将Tn5 lac引入到经历多细胞发育的细菌黄曲霉(Myxococcus xanthus)中。获得了稳定的抗卡那霉素的转导子,其不包含P1 DNA序列,但在粘球菌染色体的不同位点插入了Tn5 lac。各个转导子表达不同水平的β-半乳糖苷酶。当大量裂解时,β-半乳糖苷酶的生色底物5-溴-4-氯-3-吲哚基β-D-半乳糖苷在粘球菌中有毒。原则上,Tn5 lac可用于测定任何细菌,其中Tn5可转座并且可测量β-半乳糖苷酶。

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