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合成启动子文库的构建揭示了强链霉菌启动子的一些特定特征。

The construction of a library of synthetic promoters revealed some specific features of strong Streptomyces promoters.

机构信息

Institut de Génétique et Microbiologie, UMR8621 CNRS Université Paris Sud, 91405, Orsay, France.

出版信息

Appl Microbiol Biotechnol. 2011 Apr;90(2):615-23. doi: 10.1007/s00253-010-3018-0. Epub 2011 Jan 18.

Abstract

Streptomyces are bacteria of industrial interest whose genome contains more than 73% of bases GC. In order to define, in these GC-rich bacteria, specific sequence features of strong promoters, a library of synthetic promoters of various sequence composition was constructed in Streptomyces. To do so, the sequences located upstream, between and downstream of the -35 and -10 consensus promoter sequences were completely randomized and some variability was introduced in the -35 (position 6) and -10 (positions 3, 4 and 5) hexamers recognized by the major vegetative sigma factor HrdB. The synthetic promoters were cloned into the promoter-probe plasmid pIJ487 just upstream of the promoter-less aphII gene that confers resistance to neomycin. This synthetic promoter library was transformed into Streptomyces lividans, and the resulting transformants were screened for their ability to grow in the presence of different concentrations of neomycin (20, 50, and 100 μgml(-1)). Promoter strengths varied up to 12-fold, in small increments of activity increase, as determined by reverse transcriptase-PCR. This collection of promoters of various strengths can be useful for the fine-tuning of gene expression in genetic engineering projects. Thirty-eight promoters were sequenced, and the sequences of the 14 weakest and 14 strongest promoters were compared using the WebLogo software with small sample correction. This comparison revealed that the -10 box, the -10 extended motif as well as the spacer of the strong Streptomyces promoters are more G rich than those of the weak promoters.

摘要

链霉菌是具有工业应用价值的细菌,其基因组中 GC 碱基含量超过 73%。为了在这些富含 GC 的细菌中定义强启动子的特定序列特征,我们在链霉菌中构建了各种序列组成的合成启动子文库。为此,我们对 -35 和 -10 一致性启动子序列上下游和之间的序列进行了完全随机化,并在主要的营养型 sigma 因子 HrdB 识别的 -35(第 6 位)和 -10(第 3、4 和 5 位)六聚体位置引入了一些可变性。这些合成启动子被克隆到启动子探针质粒 pIJ487 中,该质粒位于无启动子的 aphII 基因上游,该基因赋予新霉素抗性。将这个合成启动子文库转化到 Streptomyces lividans 中,然后筛选能够在不同浓度新霉素(20、50 和 100μgml(-1))存在下生长的转化体。通过逆转录 PCR 确定,启动子的强度变化高达 12 倍,活性增加幅度很小。这个具有不同强度的启动子集合可用于基因工程项目中精细调节基因表达。我们对 38 个启动子进行了测序,并使用 WebLogo 软件对 14 个最弱和 14 个最强启动子的序列进行了比较,同时进行了小样本校正。这一比较表明,强链霉菌启动子的 -10 框、-10 扩展基序以及间隔区比弱启动子更富含 GC。

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