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Strong minor groove base conservation in sequence logos implies DNA distortion or base flipping during replication and transcription initiation

机译:序列徽标中强烈的小沟碱基保守性意味着复制和转录起始过程中DNA变形或碱基翻转

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摘要

The sequence logo for DNA binding sites of the bacteriophage P1 replication protein RepA shows unusually high sequence conservation (~2 bits) at a minor groove that faces RepA. However, B-form DNA can support only 1 bit of sequence conservation via contacts into the minor groove. The high conservation in RepA sites therefore implies a distorted DNA helix with direct or indirect contacts to the protein. Here I show that a high minor groove conservation signature also appears in sequence logos of sites for other replication origin binding proteins (Rts1, DnaA, P4 α, EBNA1, OrC) and promoter binding proteins (σ~(70), σ~D factors). This finding implies that DNA binding proteins generally use non-B-form DNA distortion such as base flipping to initiate replication and transcription.
机译:噬菌体P1复制蛋白RepA的DNA结合位点的序列徽标在面对RepA的小沟处显示出异常高的序列保守性(〜2位)。但是,B型DNA通过与小沟的接触只能支持1位的序列保守。因此,RepA位点的高度保守性意味着与蛋白质直接或间接接触的扭曲的DNA螺旋。在这里,我证明了在其他复制起点结合蛋白(Rts1,DnaA,P4α,EBNA1,OrC)和启动子结合蛋白(σ〜(70),σ〜D因子)的位点序列徽标中也出现了较高的小沟保守性签名。 )。该发现暗示DNA结合蛋白通常使用非B形式的DNA畸变,例如碱基翻转来启动复制和转录。

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