Kozhina T N, Peshekhonov V T, Chepurnaia O V
Genetika. 1988 Jun;24(6):993-7.
In our earlier works we observed high frequency of recombination between two chimeric plasmids of different types, when they were introduced into yeast cells via cotransformation. Incapability of one of these plasmids to replicate autonomously in yeast cell is the necessary condition for such recombination. The high efficiency of this process point to the differences between interplasmid recombination and other types of yeast recombination. In this work, we studied the participation of two genes in the control of interplasmid exchanges. These are RAD52 responsible for normal processes of meiotic and mitotic recombination and highly specific gene FLP located on 2 mkm DNA which specifies site-specific recombination in the region of inverted sequences of this plasmid. The mutation rad52 in the recipient strain was shown to sharply decrease the efficiency of recombination between integrative and episome plasmids during cotransformation. The absence of FLP gene in the recipient strain (cirO) has no influence on this process.
在我们早期的研究中,我们观察到当两种不同类型的嵌合质粒通过共转化导入酵母细胞时,它们之间的重组频率很高。其中一种质粒在酵母细胞中不能自主复制是这种重组的必要条件。这个过程的高效率表明质粒间重组与其他类型的酵母重组存在差异。在这项工作中,我们研究了两个基因在质粒间交换控制中的作用。这两个基因分别是负责减数分裂和有丝分裂重组正常过程的RAD52,以及位于2μm DNA上的高度特异性基因FLP,该基因在该质粒的反向序列区域指定位点特异性重组。结果表明,受体菌株中的rad52突变会显著降低共转化过程中整合质粒和附加体质粒之间的重组效率。受体菌株(cirO)中不存在FLP基因对这一过程没有影响。