首页> 美国卫生研究院文献>Journal of Bacteriology >The beta-lactam biosynthesis genes for isopenicillin N epimerase and deacetoxycephalosporin C synthetase are expressed from a single transcript in Streptomyces clavuligerus.
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The beta-lactam biosynthesis genes for isopenicillin N epimerase and deacetoxycephalosporin C synthetase are expressed from a single transcript in Streptomyces clavuligerus.

机译:异青霉素N差向异构酶和脱乙酰氧基头孢菌素C合成酶的β-内酰胺生物合成基因由棒状链霉菌中的单个转录物表达。

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摘要

Isopenicillin N isomerase (epimerase) has been purified from Streptomyces clavuligerus, and the amino acid sequence of the N-terminus has been determined. By using single oligonucleotide probes based on high GC codon bias ("guessmers"), the translation start codons were determined for two successive genes in the beta-lactam-biosynthetic pathway and mapped within a 3.6-kilobase-pair KpnI restriction fragment. The epimerase gene (cefD) was located immediately upstream of the deacetoxycephalosporin C synthetase (expandase) gene (cefE) that was characterized previously. cefD was sequenced and expressed in Escherichia coli; the resulting cell extracts contained epimerase activity. Western immunoblots demonstrated that a protein comigrated with purified S. clavuligerus epimerase at 44 kilodaltons. cefD and cefE were separated by an 81-base-pair segment. The DNA sequence upstream of the epimerase gene had a high AT content, suggestive of a promoter region. Primer extension analysis of S. clavuligerus mRNA showed that the start of transcription occurred approximately 130 base pairs upstream of the epimerase translation start site; Northern (RNA blot) analysis revealed a hybridization signal large enough to code for both epimerase and expandase, and nuclease S1 protection assays showed that a single message may code for epimerase, expandase, and another unknown protein. When cefD and cefE were placed in an expression vector, concomitant synthesis of both epimerase and expandase occurred in E. coli.
机译:已从棒状链霉菌中纯化了异青霉素N异构酶(表异构酶),并确定了N末端的氨基酸序列。通过使用基于高GC密码子偏倚的单个寡核苷酸探针(“ guessmers”),确定了β-内酰胺生物合成途径中两个连续基因的翻译起始密码子,并将其定位在3.6碱基对KpnI限制性片段内。差向异构酶基因(cefD)位于先前表征的脱乙酰氧基头孢菌素C合成酶(扩展酶)基因(cefE)的上游。将cefD测序并在大肠杆菌中表达;所得细胞提取物具有差向异构酶活性。 Western免疫印迹表明,该蛋白与纯化的克拉维链霉菌差向异构酶的迁移速度为44道尔顿。 cefD和cefE被81个碱基对的片段分开。 Epimerase基因上游的DNA序列具有较高的AT含量,提示存在启动子区域。克拉维链霉菌mRNA的引物延伸分析表明,转录的开始发生在差向异构酶翻译起始位点上游约130个碱基对处。 Northern(RNA印迹)分析显示杂交信号足够大,可同时编码差向异构酶和扩展酶,而核酸酶S1保护试验表明单个消息可能编码差向异构酶,扩展酶和另一种未知蛋白。将cefD和cefE置于表达载体中时,在大肠杆菌中同时发生了差向异构酶和扩张酶的合成。

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