Fu Y H, Tsai M M, Luo Y N, Deonier R C
Department of Biological Sciences, University of Southern California, Los Angeles 90089-1340.
J Bacteriol. 1991 Feb;173(3):1012-20. doi: 10.1128/jb.173.3.1012-1020.1991.
Functional domains of the Escherichia coli F plasmid oriT locus were identified by deletion analysis. DNA sequences required for nicking or transfer were revealed by cloning deleted segments of oriT into otherwise nonmobilizable pUC8 vectors and testing for their ability to promote transfer or to be nicked when tra operon functions were provided in trans. Removal of DNA sequences to the right of the central A + T-rich region (i.e., from the direction of traM) did not affect the susceptibility of oriT to nicking functions; however, transfer efficiency for oriT segments deleted from the right was progressively reduced over an 80- to 100-bp interval. Deletions extending toward the oriT nick site from the left did not affect the frequency of transfer if deletion endpoints lay at least 22 bp away from the nick site. Deletions or insertions in the central, A + T-rich region caused periodic variation in transfer efficiency, indicating that phase relationships between nicking and transfer domains of oriT must be preserved for full oriT function. These data show that the F oriT locus is extensive, with domains that individually contribute to transfer, nicking, and overall structure.
通过缺失分析确定了大肠杆菌F质粒oriT位点的功能结构域。通过将oriT的缺失片段克隆到其他不可移动的pUC8载体中,并在反式提供tra操纵子功能时测试它们促进转移或被切割的能力,揭示了切割或转移所需的DNA序列。去除中央富含A+T区域右侧的DNA序列(即从traM方向开始)不影响oriT对切割功能的敏感性;然而,从右侧缺失的oriT片段的转移效率在80至100个碱基对的间隔内逐渐降低。如果缺失终点距离切割位点至少22个碱基对,则从左侧向oriT切割位点延伸的缺失不影响转移频率。中央富含A+T区域的缺失或插入导致转移效率的周期性变化,表明oriT的切割和转移结构域之间的相位关系必须得以保留才能实现完整oriT功能。这些数据表明F oriT位点范围广泛,其结构域分别对转移、切割和整体结构有贡献。