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嗜酸多源菌隐秘质粒pAM5的核苷酸序列分析

Nucleotide sequence analysis of cryptic plasmid pAM5 from Acidiphilium multivorum.

作者信息

Singh Samarendra K, Banerjee Pataki C

机构信息

Indian Institute of Chemical Biology, 4 Raja S.C. Mullick Road, Kolkata 700 032, India.

出版信息

Plasmid. 2007 Sep;58(2):101-14. doi: 10.1016/j.plasmid.2007.01.005. Epub 2007 Mar 23.

Abstract

Plasmid pAM5 of Acidiphilium multivorum JCM-8867 has been completely sequenced by initial cloning of HindIII-PstI fragments followed by primer walking. It has a size of 5161bp and single site for several restriction enzymes as revealed by DNA sequencing. Sequence analysis predicts five putative open reading frames. ORF1 and ORF3 show significant identity with various plasmid encoded mobilization (Mob) and replication initiation (Rep) proteins, respectively. The putative Mob protein has several characteristics of the MOB(Q) family having the motifs with conserved amino acid residues. Upstream of the Mob ORF, there exists a 34bp oriT region having a nic consensus sequence. The constructed plasmid pSK1 bearing pAM5 mob region can be mobilized to Escherichia coli in presence of conjugative plasmid pRK2013. The replication module comprises of several DnaA like boxes, several perfect direct and inverted repeats, a potential prokaryotic promoter and putative rep gene. The rep module is very similar to several theta replicating iteron family plasmids, suggesting pAM5 replication to follow the same course. Any phenotypic character determinant (e.g., metal resistance, antibiotic resistance etc.) gene is absent in pAM5, suggesting this plasmid to be cryptic in nature. However, a pAM5 derivative plasmid named pSK2, containing the putative pAM5 rep region, can replicate and be stably maintained in Acidiphilium, Acidocella, and E. coli strains; it can also carry foreign DNA fragments. Thus, pSK2 could serve as a cloning shuttle vector between these bacteria. It was observed that pAM5 Rep is essential for pSK2 to replicate in acidophiles. In its natural host, A. multivorum JCM-8867, pAM5 maintains a copy number of 50-60, and its derivative pSK2 maintains a comparatively, higher copy number in E. coli than in acidophiles.

摘要

通过对嗜酸多源菌JCM - 8867的HindIII - PstI片段进行初步克隆,随后进行引物步移,已完成了质粒pAM5的全序列测定。它的大小为5161bp,DNA测序显示其对几种限制酶有单一位点。序列分析预测有五个推定的开放阅读框。ORF1和ORF3分别与各种质粒编码的转移(Mob)和复制起始(Rep)蛋白有显著同源性。推定的Mob蛋白具有MOB(Q)家族的几个特征,带有保守氨基酸残基的基序。在Mob ORF的上游,存在一个具有nic共有序列的34bp oriT区域。构建的带有pAM5 mob区域的质粒pSK1在接合性质粒pRK2013存在的情况下可转移至大肠杆菌。复制模块由几个类DnaA框、几个完美的正向和反向重复序列、一个潜在的原核启动子和推定的rep基因组成。rep模块与几个θ复制迭代子家族质粒非常相似,表明pAM5的复制遵循相同的过程。pAM5中不存在任何表型特征决定因素(如金属抗性、抗生素抗性等)基因这表明该质粒本质上是隐蔽型的。然而,一种名为pSK2的pAM5衍生质粒,含有推定的pAM5 rep区域,可在嗜酸菌属、酸单胞菌属和大肠杆菌菌株中复制并稳定维持;它还能携带外源DNA片段。因此,pSK2可作为这些细菌之间的克隆穿梭载体。据观察,pAM5 Rep对于pSK2在嗜酸菌中复制至关重要。在其天然宿主嗜酸多源菌JCM - 8867中,pAM5的拷贝数为50 - 60,其衍生物pSK2在大肠杆菌中的拷贝数相对高于在嗜酸菌中的拷贝数。

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