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酿酒酵母乙醇脱氢酶II调控区野生型及上游启动子突变的内在拓扑信息。

The intrinsic topological information of the wild-type and of up-promoter mutations of the Saccharomyces cerevisiae alcohol dehydrogenase II regulatory region.

作者信息

Della Seta F, Camilloni G, Venditti S, Di Mauro E

机构信息

Dipartimento di Genetica e Biologia Molecolare, Università di Roma La Sapienza, Italy.

出版信息

J Biol Chem. 1988 Nov 5;263(31):15888-96.

PMID:3053683
Abstract

A 569-base pair fragment encompassing the upstream regulatory region, the RNA initiation sites, and the initial part of the coding region of the Saccharomyces cerevisiae alcohol dehydrogenase II gene has been analyzed for the presence of sites which undergo conformational modification under torsional stress. Fine mapping of P1 and S1 endonuclease-sensitive sites was obtained on single topoisomers produced by in vitro ligation. It was shown that the upstream activator sequence, the TATA sequence, a region directly upstream to the RNA initiation sites, and several positions in the first segment of the transcribed region change conformation as a function of the applied torsional stress in a precisely coordinate fashion. The superhelical density optima for this coordinate modifications have been determined. Analysis of the conformational changes of the promoter sequence in several naturally occurring (Young, E. T., Williamson, V. M., Taguchi, A., Smith, M., Sledziewski, L., Russel, D., Osterman, J., Denis, C., Cox, D., and Beier, D., (1982) in Genetic Engineering of Microorganisms for Chemicals (Hollander, A., De Moss, R. D., Kaplan, S., Konisky, J., Savage, D., and Wolle, R. S., eds) pp. 335-361, Plenum Publishing Corp., New York) up-promoter constitutive mutants was performed. This analysis has shown that the conformation of functionally relevant sites changes as a function of sequence mutations that have taken place elsewhere; this shows that the conformational behavior of the whole promoter region is linked and suggests transmission in cis of topological effects in RNA polymerase II promoters.

摘要

对包含酿酒酵母乙醇脱氢酶II基因上游调控区、RNA起始位点及编码区起始部分的一段569个碱基对的片段进行了分析,以确定在扭转应力下发生构象修饰的位点。通过体外连接产生的单拓扑异构体上获得了P1和S1核酸内切酶敏感位点的精细图谱。结果表明,上游激活序列、TATA序列、RNA起始位点直接上游的一个区域以及转录区第一段中的几个位置会随着所施加的扭转应力而以精确协调的方式改变构象。已确定了这种协调修饰的超螺旋密度最佳值。对几种天然存在的(Young, E. T., Williamson, V. M., Taguchi, A., Smith, M., Sledziewski, L., Russel, D., Osterman, J., Denis, C., Cox, D., and Beier, D., (1982) in Genetic Engineering of Microorganisms for Chemicals (Hollander, A., De Moss, R. D., Kaplan, S., Konisky, J., Savage, D., and Wolle, R. S., eds) pp. 335 - 361, Plenum Publishing Corp., New York)上游启动子组成型突变体的启动子序列构象变化进行了分析。该分析表明,功能相关位点的构象会随着其他位置发生的序列突变而改变;这表明整个启动子区域的构象行为是相互关联的,并暗示了RNA聚合酶II启动子中拓扑效应的顺式传递。

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