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2 微米环状基因表达的自动调节为维持稳定的质粒拷贝水平提供了一个模型。

Autoregulation of 2 micron circle gene expression provides a model for maintenance of stable plasmid copy levels.

作者信息

Som T, Armstrong K A, Volkert F C, Broach J R

机构信息

Department of Molecular Biology, Princeton University, New Jersey 08544.

出版信息

Cell. 1988 Jan 15;52(1):27-37. doi: 10.1016/0092-8674(88)90528-4.

Abstract

The yeast plasmid 2 micron circle actively maintains high but stable copy levels in the cell, even though the plasmid confers no selective advantage to its host. To address the mechanism by which stable copy control is achieved, we have examined the level of expression of the genes resident on the yeast plasmid 2 micron circle as a function of the presence of proteins encoded by the plasmid. We find that transcription of the site-specific recombinase gene, FLP, is repressed at least 100-fold by the concerted action of the products of two other plasmid genes, REP1 and REP2. In addition, these products repress transcription of the REP1 gene itself. These results can be formulated into a consistent model for plasmid copy control.

摘要

酵母质粒2μm环在细胞中能主动维持高但稳定的拷贝水平,尽管该质粒对其宿主没有选择性优势。为了探究实现稳定拷贝控制的机制,我们研究了酵母质粒2μm环上驻留基因的表达水平与该质粒编码的蛋白质存在与否的关系。我们发现,位点特异性重组酶基因FLP的转录受到另外两个质粒基因REP1和REP2产物协同作用的抑制,至少被抑制100倍。此外,这些产物还抑制REP1基因自身的转录。这些结果可以构建成一个关于质粒拷贝控制的连贯模型。

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