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大肠杆菌rrnB P1启动子上游固有弯曲DNA区域的定位

Localization of the intrinsically bent DNA region upstream of the E.coli rrnB P1 promoter.

作者信息

Gaal T, Rao L, Estrem S T, Yang J, Wartell R M, Gourse R L

机构信息

Department of Bacteriology, University of Wisconsin-Madison 53706.

出版信息

Nucleic Acids Res. 1994 Jun 25;22(12):2344-50. doi: 10.1093/nar/22.12.2344.

Abstract

DNA sequences upstream of the rrnB P1 core promoter (-10, -35 region) increase transcription more than 300-fold in vivo and in vitro. This stimulation results from a cis-acting DNA sequence, the UP element, which interacts directly with the alpha subunit of RNA polymerase, increasing transcription about 30-fold, and from a positively acting transcription factor, FIS, which increases expression another 10-fold. A DNA region exhibiting a high degree of intrinsic curvature has been observed upstream of the rrnB P1 core promoter and has thus been often cited as an example of the effect of bending on transcription. However, the precise position of the curvature has not been determined. We address here whether this bend is in fact related to activation of rRNA transcription. Electrophoretic analyses were used to localize the major bend in the rrnB P1 upstream region to position approximately -100 with respect to the transcription initiation site. Since most of the effect of upstream sequences on transcription results from DNA between the -35 hexamer and position -88, i.e. downstream of the bend center, these studies indicate that the curvature leading to the unusual electrophoretic behavior of the upstream region does not play a major role in activation of rRNA transcription. Minor deviations from normal electrophoretic behavior were associated with the region just upstream of the -35 hexamer and could conceivably influence interactions between the UP element and the alpha subunit of RNA polymerase.

摘要

rrnB P1核心启动子(-10、-35区域)上游的DNA序列在体内和体外可使转录增加300倍以上。这种刺激源于一种顺式作用DNA序列——上游元件(UP元件),它直接与RNA聚合酶的α亚基相互作用,使转录增加约30倍;还源于一种正性作用转录因子FIS,它使表达再增加10倍。在rrnB P1核心启动子上游观察到一个具有高度固有曲率的DNA区域,因此它常被作为弯曲对转录影响的一个例子被引用。然而,曲率的精确位置尚未确定。我们在此探讨这种弯曲是否实际上与rRNA转录的激活有关。电泳分析用于将rrnB P1上游区域的主要弯曲定位到相对于转录起始位点大约-100的位置。由于上游序列对转录的大多数影响来自-35六聚体与-88位置之间的DNA,即在弯曲中心的下游,这些研究表明,导致上游区域异常电泳行为的曲率在rRNA转录激活中不发挥主要作用。与-35六聚体上游区域相关的是与正常电泳行为的微小偏差,并且可以想象这会影响UP元件与RNA聚合酶α亚基之间的相互作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b64c/523693/eb7b0c187c7c/nar00036-0173-a.jpg

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