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DNA BINDING AND PHASING ANALYSES OF TN5 TRANSPOSASE AND A MONOMERIC VARIANT

机译:TN5转座酶DNA结合与结合分析及单体变异。

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Both full-length Tn5 transposase and a COOH-terminal truncated monomeric form of the protein, Delta 369, have been shown to specifically bind end sequences at comparable affinities. In addition, both proteins distort the target sequence in a similar manner, as determined by a circular permutation assay. In this study, Delta EK54, a derivative of Delta 369 with a single amino acid substitution that significantly enhances binding activity, is used in further binding and bending studies along with full-length transposase. Phasing analysis has shown that distortion of the end sequences upon binding of full-length transposase and Delta EK54 protein is due in part to a protein-induced bend oriented towards the major groove. Because the center of transposase-induced bending maps to the extreme leftward end of the 19 bp consensus sequence, we examined the possibility that optimal protein binding requires additional upstream nucleotide contacts. Experiments presented here show that 9-10 nucleotides are needed upstream of +1 of the 19 bp sequence for efficient binding and this requirement can be met by either single-stranded or double-stranded DNA.
机译:全长Tn5转座酶和COOH末端截短的单体形式的蛋白质Delta 369均已显示出可比亲和力特异性结合末端序列。另外,两种蛋白都以类似的方式使靶序列变形,如通过循环置换测定所确定的。在这项研究中,Delta EK54(具有单个氨基酸取代的Delta 369衍生物,可显着增强结合活性)与全长转座酶一起用于进一步的结合和弯曲研究。分阶段分析表明,全长转座酶和Delta EK54蛋白结合后,末端序列的变形部分归因于蛋白质诱导的朝向大沟的弯曲。因为转座酶诱导的弯曲中心映射到19 bp共有序列的最左端,所以我们检查了最佳蛋白质结合需要额外的上游核苷酸接触的可能性。此处进行的实验表明,为了有效结合,在19 bp序列的+1上游需要9-10个核苷酸,单链或双链DNA均可满足此要求。

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