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酿酒酵母2微米环状质粒的拷贝数扩增

Copy number amplification of the 2 micron circle plasmid of Saccharomyces cerevisiae.

作者信息

Futcher A B

出版信息

J Theor Biol. 1986 Mar 21;119(2):197-204. doi: 10.1016/s0022-5193(86)80074-1.

Abstract

The 2 micron circle is a small double stranded DNA plasmid that occurs at about 60 copies per cell in the nuclei of virtually all strains of Saccharomyces cerevisiae. The plasmid has no apparent phenotypic effect on host cells, and is the basis of many useful vectors for the transformation of yeast. Under certain circumstances, the plasmid is apparently able to replicate more than once per cell cycle; this over-replication allows the maintenance of the plasmid at high copy number. The plasmid has two inverted repeat sequences, and encodes a product that catalyses intra-molecular recombination between these two repeats. Models are proposed whereby recombination leads to copy number amplification. In particular, it is proposed that intra-molecular recombination during replication flips the orientation of one replication fork with respect to the other, so that both forks travel in the same direction around a circular monomer template, generating a large multimer from a monomer and a single initiation of replication.

摘要

2 微米环状质粒是一种小型双链 DNA 质粒,几乎在所有酿酒酵母菌株的细胞核中,每个细胞约有 60 个拷贝。该质粒对宿主细胞没有明显的表型效应,是许多用于酵母转化的有用载体的基础。在某些情况下,该质粒显然能够在每个细胞周期复制不止一次;这种过度复制使得质粒能够以高拷贝数维持。该质粒有两个反向重复序列,并编码一种催化这两个重复序列之间分子内重组的产物。提出了一些模型,认为重组导致拷贝数扩增。特别是,有人提出在复制过程中的分子内重组会使一个复制叉相对于另一个复制叉翻转方向,从而使两个复制叉围绕环状单体模板沿相同方向移动,从一个单体和一次复制起始产生一个大型多聚体。

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