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玫瑰小单孢菌pMR2质粒的特性分析及用于位点特异性整合的高G+C密码子优化整合酶的开发。

Characterization of the Micromonospora rosaria pMR2 plasmid and development of a high G+C codon optimized integrase for site-specific integration.

作者信息

Hosted Thomas J, Wang Tim, Horan Ann C

机构信息

New Lead Discovery, Schering Plough Research Institute, 2015 Galloping Hill Road, K15-C321-MS3600, Kenilworth, NJ 07033, USA.

出版信息

Plasmid. 2005 Nov;54(3):249-58. doi: 10.1016/j.plasmid.2005.05.004. Epub 2005 Jul 15.

Abstract

pMR2, an 11.1 kb plasmid was isolated from Micromonospora rosaria SCC2095, NRRL3718, and its complete nucleotide sequence determined. Analysis revealed 13 ORFs including homologs of a KorSA regulatory protein and TraB plasmid transfer protein found on other actinomycete plasmids. pMR2 contains att/int functions consisting of an integrase, an excisionase, and a putative plasmid attachment site (attP). The integrase gene contained a high frequency of codons rarely used in high G+C actinomycete coding regions. The gene was codon optimized for actinomycete codon usage to create the synthetic gene int-OPT. pSPRX740, containing an rpsL promoter and the att/int-OPT region, was introduced into Micromonospora halophytica var. nigra ATCC33088. Analysis of DNA flanking the pSPRX740 integration site confirmed site-specific integration into a tRNA(Phe) gene in the M. halopytica var. nigra chromosome. The pMR2 attP element and chromosomal attachment (attB) site contain a 63 bp region of sequence identity overlapping the 3' end of the tRNA(Phe) gene. Plasmids comprising the site-specific att/int-OPT functions of pMR2 can be used to integrate genes into the chromosome of actinomycetes with an appropriate tRNA gene. The development of an integrative system for Micromonospora will expand our ability to study antibiotic biosynthesis in this important actinomycete genus.

摘要

pMR2是一种11.1 kb的质粒,从玫瑰小单孢菌SCC2095(NRRL3718)中分离得到,并测定了其完整的核苷酸序列。分析显示,该质粒含有13个开放阅读框(ORF),包括在其他放线菌质粒上发现的KorSA调控蛋白和TraB质粒转移蛋白的同源物。pMR2含有由整合酶、切除酶和假定的质粒附着位点(attP)组成的att/int功能。整合酶基因在高G+C含量的放线菌编码区中含有高频使用的稀有密码子。该基因针对放线菌密码子使用情况进行了密码子优化,以创建合成基因int-OPT。将含有rpsL启动子和att/int-OPT区域的pSPRX740导入嗜盐小单孢菌黑色变种ATCC33088。对pSPRX740整合位点侧翼的DNA分析证实,其位点特异性整合到嗜盐小单孢菌黑色变种染色体中的一个tRNA(Phe)基因中。pMR2的attP元件和染色体附着(attB)位点包含一个63 bp的序列同源区域,与tRNA(Phe)基因的3'端重叠。包含pMR2位点特异性att/int-OPT功能的质粒可用于将基因整合到具有合适tRNA基因的放线菌染色体中。嗜盐小单孢菌整合系统的开发将扩展我们在这个重要放线菌属中研究抗生素生物合成的能力。

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