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大肠杆菌质粒RSF 1030的复制起点

Origin of replication of Escherichia coli plasmid RSF 1030.

作者信息

Som T, Tomizawa J

出版信息

Mol Gen Genet. 1982;187(3):375-83. doi: 10.1007/BF00332615.

Abstract

The nucleotide sequence of a region of plasmid RSF 1030 that includes the origin of DNA replication was determined using the DNA of a small derivative, pST19. The nucleotide sequence of the pST 19 origin region is very similar to that of the ColE1 origin except for a 25 base pair (bp) deletion about 350 bp upstream of the origin and a considerable difference in the region between 400 and 600 bp upstream of the origin. Replication of pST19 starts at one of three consecutive nucleotides (dA, dA or dC) located at a unique position in the region where the nucleotide sequence is identical to that of the ColE1 origin. There are two major sites of initiation of transcription in the region. Transcription from one of the sites yields the primer precursor that can be cleaved by RNase H to form the primer of about 530 nucleotides long. Transcription from the other site proceeds on the opposite strand and terminates close to the primer initiation site to yield species I RNA (or RNA I) about 105 nucleotides long. The presumed RNA polymerase binding sites in the promoters of these transcripts differ from those of the corresponding ColE1 transcripts. Incompatibility specified by pST19 is different from that specified by ColE1. Hypothetical peptides encoded by the origin region of these plasmids are unlikely to be involved in the determination of incompatibility. It has been shown that RNA I is an incompatibility-group specific inhibitor of primer formation. Despite a significant difference in nucleotide sequence, the primer RNA and RNA I of pST19 can be folded into structures analogous to those of the ColE1 transcripts.

摘要

利用小衍生物pST19的DNA确定了质粒RSF 1030中包含DNA复制起点的区域的核苷酸序列。pST 19起点区域的核苷酸序列与ColE1起点的序列非常相似,只是在起点上游约350 bp处有一个25碱基对(bp)的缺失,以及在起点上游400至600 bp之间的区域有相当大的差异。pST19的复制起始于位于该区域一个独特位置的三个连续核苷酸(dA、dA或dC)之一,该区域的核苷酸序列与ColE1起点的序列相同。该区域有两个主要的转录起始位点。从其中一个位点转录产生引物前体,该引物前体可被RNase H切割形成约530个核苷酸长的引物。从另一个位点的转录在相反链上进行,并在引物起始位点附近终止,产生约105个核苷酸长的I类RNA(或RNA I)。这些转录本启动子中推测的RNA聚合酶结合位点与相应的ColE1转录本的不同。pST19所指定的不相容性与ColE1所指定的不同。这些质粒起点区域编码的假设肽不太可能参与不相容性的决定。已经表明,RNA I是引物形成的不相容组特异性抑制剂。尽管核苷酸序列存在显著差异,但pST19的引物RNA和RNA I可以折叠成与ColE1转录本类似的结构。

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