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苯甲酸拟无枝酸菌质粒pA387的核苷酸序列及接合型穿梭载体的构建

Nucleotide sequence of plasmid pA387 of Amycolatopsis benzoatilytica and construction of a conjugative shuttle vector.

作者信息

Malhotra Shweta, Majumdar Swati, Kumar Mukesh, Bhasin V K, Gartemann Karl-Heinz, Lal Rup

机构信息

Department of Zoology, University of Delhi, Delhi, India.

出版信息

J Basic Microbiol. 2008 Jun;48(3):177-85. doi: 10.1002/jobm.200700326.

Abstract

The complete nucleotide sequence of plasmid pA387 of Amycolatopsis benzoatilytica DSM 43387 was determined. Sequence analysis revealed that pA387 is 30,157 bp long and has a G+C content of 71.74%. To obtain a minimal transferable replicon capable of self-replication, a 2,176 bp fragment of pA387 was cloned, and we demonstrated that this fragment is sufficient for autonomous replication. The replication region of pA387 exhibited no significant homology to any known replication proteins available in databases. Putative maintenance and transfer functions were identified on pA387. The predicted products of open reading frames, ORF 2 and ORF 12, resembled the plasmid stabilizing proteins, a DNA resolvase and a ParA protein, respectively. The putative translational products of ORF 15 and ORF 16 showed similarity to known bacterial conjugation proteins, TraG and TraA, respectively. A conjugative Escherichia coli -Amycolatopsis shuttle-cloning vector was constructed by using the pA387 replicon and designated pSETRL1. Shuttle vector pSETRL1 successfully transformed Amycolatopsis mediterranei DSM 40773 and Amycolatopsis orientalis NBRC 12806 by conjugation and electroporation, and is likely to be a useful vector in Amycolatopsis research.

摘要

测定了苯甲酸拟无枝酸菌DSM 43387的质粒pA387的完整核苷酸序列。序列分析表明,pA387长30,157 bp,G+C含量为71.74%。为了获得一个能够自我复制的最小可转移复制子,克隆了pA387的一个2,176 bp片段,并且我们证明了该片段足以进行自主复制。pA387的复制区域与数据库中任何已知的复制蛋白均无显著同源性。在pA387上鉴定出了假定的维持和转移功能。开放阅读框ORF 2和ORF 12的预测产物分别类似于质粒稳定蛋白、一种DNA解离酶和一种ParA蛋白。ORF 15和ORF 16的假定翻译产物分别与已知的细菌接合蛋白TraG和TraA相似。利用pA387复制子构建了一种接合型大肠杆菌-拟无枝酸菌穿梭克隆载体,命名为pSETRL1。穿梭载体pSETRL1通过接合和电穿孔成功转化了地中海拟无枝酸菌DSM 40773和东方拟无枝酸菌NBRC 12806,并且可能是拟无枝酸菌研究中的一种有用载体。

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