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Efficient control of raf gene expression by CAP and two Raf repressors that bend DNA in opposite directions.

机译:通过CAP和两个可沿相反方向弯曲DNA的Raf阻遏物有效控制raf基因的表达。

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The plasmid-borne raf operon of Escherichia coli encodes proteins involved in the uptake and utilisation of the trisaccharide raffinose. The operon is subject to dual regulation; to negative control by the binding of RafR repressor to twin operators, O1 and O2, and to positive control by the cAMP-binding protein, CAP. We have identified the CAP binding site (CBS) as a 22 bp palindromic sequence with incomplete dyad symmetry by deletion analysis, DNasel footprinting and electrophoretic mobility shift assays (EMSA) of CAP-DNA complexes. The CBS is centred 60.5 bp upstream of the transcription start point and partially overlaps O1. In vivo, CAP increases rafA (alpha-galactosidase) gene expression up to 50-fold. The 28 bp spacing between the centres of CBS and the - 35 box is essential, since insertions of 4, 8, 12 or 16 bp completely eliminated rafA gene expression. In vitro binding studies revealed that the CBS, O1 and O2 sites, can be simultaneously occupied by their cognate proteins. However, no cooperativity between binding of CAP and RafR was detected. EMSA with circularly permuted DNA fragments demonstrated that CAP and RafR proteins bend raf promoter (rafP) DNA by 75 degrees +/- 5 degrees and 95 degrees +/- 5 degrees, respectively, in opposite directions. Among sugar catabolic operons, the compact arrangement of three protein-binding sites, a CBS and two operators bounding the - 35 promoter box, is unique and provides a sensitive and highly efficient device for transcriptional control.
机译:大肠杆菌的质粒携带的raf操纵子编码参与三糖棉子糖的摄取和利用的蛋白质。操纵子受双重管制;通过RafR阻遏物与双操纵子O1和O2的结合来进行阴性对照,并通过cAMP结合蛋白CAP来进行阳性对照。我们已经通过CAP-DNA复合物的缺失分析,DNasel足迹和电泳迁移率迁移分析(EMSA)将CAP结合位点(CBS)鉴定为22 bp回文序列,具有不完全的二重对称性。 CBS在转录起点上游居中60.5 bp,与O1部分重叠。在体内,CAP使rafA(α-半乳糖苷酶)基因表达增加多达50倍。 CBS中心与-35框之间的28 bp间隔至关重要,因为插入4、8、12或16 bp完全消除了rafA基因表达。体外结合研究表明,CBS,O1和O2位点可以同时被其同源蛋白占据。然而,在CAP和RafR的结合之间没有检测到协同作用。具有圆形排列的DNA片段的EMSA表明,CAP和RafR蛋白分别沿相反的方向使raf启动子(rafP)DNA弯曲75度+/- 5度和95度+/- 5度。在糖分解代谢操纵子中,三个蛋白质结合位点,一个CBS和两个结合-35启动子盒的操纵子的紧凑排列是独特的,并为转录控制提供了灵敏且高效的装置。

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