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γδ重组位点分析。位点特异性重组和基因表达所需的位点。

Analysis of the gamma delta res site. Sites required for site-specific recombination and gene expression.

作者信息

Wells R G, Grindley N D

出版信息

J Mol Biol. 1984 Nov 15;179(4):667-87. doi: 10.1016/0022-2836(84)90161-x.

Abstract

The gamma delta resolvase, product of the transposon's tnpR gene, mediates a site-specific recombination between two copies of gamma delta directly repeated on the same replicon. The site at which the recombination occurs, res, lies between the tnpA and tnpR genes. Within this same region lie the promoters for expression of tnpA and tnpR and the operator sites through which resolvase regulates the transcription. In order to determine the extent of the res site we have constructed in vitro a series of deletions that terminate within the tnpA-tnpR intergenic region, and have analyzed their effect on site-specific recombination. Our results indicate that a fully functional res site is about 115 base-pairs (bp) and runs from a position 15 bp to the left (tnpA-proximal) side of the crossover point to 100 bp to the right. This segment corresponds precisely to the region defined by the three resolvase binding sites that we have demonstrated previously. Alterations of the nucleotide sequence around the crossover point indicate the importance of all or part of the central palindrome 5' T-T-A-T-A-A within which the breakage--reunion reaction takes place. Taken together, our results strengthen our earlier conclusion that resolvase recognizes the 9 bp segment 5' T-G-T-C-Y-N-N-T-A that occurs (in slightly degenerate form) in each half of the three binding sites. Using the deletions we have confirmed that the tnpA promoter spans the crossover site and have shown that the major tnpR promoter in vivo coincides with resolvase binding site II, although a second promoter for tnpR transcription lies across site I.

摘要

转座子tnpR基因的产物γδ解离酶介导同一复制子上两个直接重复的γδ拷贝之间的位点特异性重组。重组发生的位点res位于tnpA和tnpR基因之间。在同一区域内有tnpA和tnpR表达的启动子以及解离酶调节转录的操纵位点。为了确定res位点的范围,我们在体外构建了一系列在tnpA - tnpR基因间区域内终止的缺失片段,并分析了它们对位点特异性重组的影响。我们的结果表明,一个功能完整的res位点约为115个碱基对(bp),从交叉点左侧15 bp(靠近tnpA)的位置延伸到右侧100 bp。该片段精确对应于我们先前证明的由三个解离酶结合位点所界定的区域。交叉点周围核苷酸序列的改变表明中央回文序列5'T - T - A - T - A - A的全部或部分对于发生断裂 - 重连反应的重要性。综合来看,我们的结果强化了我们早期的结论,即解离酶识别在三个结合位点的每一半中以稍微简并形式出现的9 bp片段5'T - G - T - C - Y - N - N - T - A。利用这些缺失片段,我们证实了tnpA启动子跨越交叉位点,并表明体内主要的tnpR启动子与解离酶结合位点II重合,尽管tnpR转录的第二个启动子跨越位点I。

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