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来自棒状链霉菌的ccaR基因的转录和翻译分析。

Transcriptional and translational analysis of the ccaR gene from Streptomyces clavuligerus.

作者信息

Wang Liru, Tahlan Kapil, Kaziuk Tracy L, Alexander Dylan C, Jensen Susan E

机构信息

Department of Biological Sciences, University of Alberta, Edmonton, Canada T6G 2E9.

出版信息

Microbiology (Reading). 2004 Dec;150(Pt 12):4137-45. doi: 10.1099/mic.0.27245-0.

Abstract

CcaR is a positive-acting transcriptional regulator involved in cephamycin C and clavulanic acid biosynthesis in Streptomyces clavuligerus. Previous sequence analyses of the ccaR gene revealed two possible start codons, an ATG, and a GTG located in-frame 18 bp downstream of the ATG. To determine the true start codon, ccaR was expressed, either from the GTG or ATG codon, in Escherichia coli. A protein product was only obtained from the ATG construct. Similarly, ccaR constructs originating from ATG or GTG and designed for expression from a glycerol-regulated promoter in Streptomyces species were prepared and used to complement a S. clavuligerus ccaR mutant. Bioassays showed that only the ATG construct could complement the ccaR mutant to restore cephamycin C production, and Western analysis confirmed the presence of CcaR in the mutant complemented with the ATG construct only. To ensure that expression of ccaR from its native promoter also initiated at the ATG rather than GTG, a conservative point mutation was introduced into ccaR, converting the GTG to GTC. The GTC construct still fully complemented a ccaR mutant, confirming that ATG is the true start codon. Inspection of the region upstream of ccaR by S1 nuclease protection and primer extension analyses indicated the presence of two transcript start points that mapped to residues located 74 and 173 bp upstream of the ATG codon.

摘要

CcaR是一种正向作用的转录调节因子,参与棒状链霉菌中头孢霉素C和克拉维酸的生物合成。先前对ccaR基因的序列分析揭示了两个可能的起始密码子,一个是ATG,另一个是GTG,位于ATG下游18 bp的读码框内。为了确定真正的起始密码子,分别从GTG或ATG密码子开始,在大肠杆菌中表达ccaR。仅从ATG构建体获得了蛋白质产物。同样,制备了源自ATG或GTG且设计用于从链霉菌属甘油调节启动子表达的ccaR构建体,并用于互补棒状链霉菌ccaR突变体。生物测定表明,只有ATG构建体能够互补ccaR突变体以恢复头孢霉素C的产生,蛋白质免疫印迹分析证实只有用ATG构建体互补的突变体中存在CcaR。为确保ccaR从其天然启动子的表达也从ATG而非GTG起始,在ccaR中引入了一个保守的点突变,将GTG转换为GTC。GTC构建体仍能完全互补ccaR突变体,证实ATG是真正的起始密码子。通过S1核酸酶保护和引物延伸分析对ccaR上游区域进行检测,结果表明存在两个转录起始点,分别位于ATG密码子上游74和173 bp处的残基位置。

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