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首页> 外文期刊>Journal of Molecular Biology >HIGH ANGLE AND LIGAND-INDUCED LOW ANGLE DNA BENDS INCITED BY OCCR LIE IN THE SAME PLANE WITH OCCR BOUND TO THE INTERIOR ANGLE
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HIGH ANGLE AND LIGAND-INDUCED LOW ANGLE DNA BENDS INCITED BY OCCR LIE IN THE SAME PLANE WITH OCCR BOUND TO THE INTERIOR ANGLE

机译:OCCR LIE在同一平面内产生的高角度和配体诱导的低角度DNA弯曲,OCCR结合到内部角度

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摘要

The OccR protein of Agrobacterium tumefaciens activates transcription of the occQ operon in response to octopine. Octopine shortens the DNase I footprint of OccR and relaxes an OccR-incited DNA bend. In this study, we used hydroxyl radical footprinting to show that OccR contacts only one face of the operator. This contact spans 50 nucleotide pairs in the absence of octopine, and 39 nucleotide pairs in the presence of octopine. Octopine enhanced protection of the central region of the footprint. OccR blocked intercalation by methidiumpropyl EDTA along most of the operator, but did not block intercalation at the bend center. OccR protected DNA against both reagents far more completely at the promoter-distal half of the operator than at the promoter-promixal half. Experiments to alter the phasing between the operator bend and an adjacent sequence-directed bend indicated that the high angle DNA bend in the absence of octopine, and the low angle bend in the presence of octopine, lie in the same plane. Operator DNA was bent toward the helical face that OccR protected from hydroxyl radicals, indicating that OccR occupies the interior angle of this bend. (C) 1995 Academic Press Limited [References: 42]
机译:根癌农杆菌的OccR蛋白响应于章鱼碱激活occQ操纵子的转录。章鱼碱可缩短OccR的DNase I足迹,并放松OccR诱导的DNA弯曲。在这项研究中,我们使用羟基自由基足迹法来证明OccR仅接触操作员的一面。这种接触在无章鱼碱的情况下跨越50个核苷酸对,而在有章鱼碱的情况下跨越39个核苷酸对。章鱼碱增强了对足迹中央区域的保护。 OccR阻止了大多数操作者使用甲基丙基EDTA的嵌入,但没有阻止弯曲中心的嵌入。 OccR保护DNA不受两种试剂的影响,在操纵子的启动子末端一半处比在启动子混合部分处更完整。改变操纵者弯曲和相邻的序列定向弯曲之间的相位的实验表明,在没有章鱼碱的情况下高角度DNA弯曲和在章鱼碱存在的情况下低角度DNA弯曲位于同一平面上。操纵子DNA向OccR保护免受羟基自由基侵害的螺旋面弯曲,表明OccR占据了该弯曲的内角。 (C)1995 Academic Press Limited [参考:42]

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