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Sequence-specific DNA binding activity of the cross-brace zinc finger motif of the piggyBac transposase

机译:piggyBac转座酶的十​​字形锌指基序的序列特异性DNA结合活性

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摘要

The piggyBac transposase (PB) is distinguished by its activity and utility in genome engineering, especially in humans where it has highly promising therapeutic potential. Little is known, however, about the structure–function relationships of the different domains of PB. Here, we demonstrate in vitro and in vivo that its C-terminal Cysteine-Rich Domain (CRD) is essential for DNA breakage, joining and transposition and that it binds to specific DNA sequences in the left and right transposon ends, and to an additional unexpectedly internal site at the left end. Using NMR, we show that the CRD adopts the specific fold of the cross-brace zinc finger protein family. We determine the interaction interfaces between the CRD and its target, the 5′-TGCGT-3′/3′-ACGCA-5′ motifs found in the left, left internal and right transposon ends, and use NMR results to propose docking models for the complex, which are consistent with our site-directed mutagenesis data. Our results provide support for a model of the PB/DNA interactions in the context of the transpososome, which will be useful for the rational design of PB mutants with increased activity.
机译:piggyBac转座酶(PB)的特点是在基因组工程中的活性和实用性,尤其是在人类中,它具有极高的治疗潜力。然而,关于PB不同域的结构-功能关系知之甚少。在这里,我们在体内和体外证明了其C端半胱氨酸富集结构域(CRD)对于DNA断裂,连接和易位至关重要,并且它与左右转座子末端的特定DNA序列以及其他分子结合左端的内部站点出乎意料。使用NMR,我们显示CRD采用了跨括号锌指蛋白家族的特定折叠。我们确定CRD与它的靶标,在左,左内和右转座子末端发现的5'-TGCGT-3'/ 3'-ACGCA-5'模体之间的相互作用界面,并使用NMR结果提出对接模型复杂,与我们的定点诱变数据一致。我们的结果为转座体中PB / DNA相互作用的模型提供了支持,这将有助于合理设计具有增加的活性的PB突变体。

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