首页> 外文OA文献 >Transplantation of a 17-amino acid alpha-helical DNA-binding domain into an antibody molecule confers sequence-dependent DNA recognition.
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Transplantation of a 17-amino acid alpha-helical DNA-binding domain into an antibody molecule confers sequence-dependent DNA recognition.

机译:将17个氨基酸的α-螺旋DNA结合结构域移植到抗体分子中可赋予序列依赖性DNA识别能力。

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摘要

Recombinant antibodies capable of sequence-specific interactions with nucleic acids represent a class of DNA- and RNA-binding proteins with potential for broad application in basic research and medicine. We describe the rational design of a DNA-binding antibody, Fab-Ebox, by replacing a variable segment of the immunoglobulin heavy chain with a 17-amino acid domain derived from TFEB, a class B basic helix-loop-helix protein. DNA-binding activity was studied by electrophoretic mobility-shift assays in which Fab-Ebox was shown to form a specific complex with DNA containing the TFEB recognition motif (CACGTG). Similarities were found in the abilities of TFEB and Fab-Ebox to discriminate between oligodeoxyribonucleotides containing altered recognition sequences. Comparable interference of binding by methylation of cytosine residues indicated that Fab-Ebox and TFEB both contact DNA through interactions along the major groove of double-stranded DNA. The results of this study indicate that DNA-binding antibodies of high specificity can be developed by using the modular nature of both immunoglobulins and transcription factors.
机译:能够与核酸进行序列特异性相互作用的重组抗体代表了一类DNA和RNA结合蛋白,具有在基础研究和医学中广泛应用的潜力。我们描述了DNA结合抗体Fab-Ebox的合理设计,方法是用衍生自B类基本螺旋-环-螺旋蛋白TFEB的17个氨基酸域替换免疫球蛋白重链的可变区。通过电泳迁移率迁移分析研究了DNA结合活性,其中Fab-Ebox被证明与含有TFEB识别基序(CACGTG)的DNA形成特定的复合物。发现在TFEB和Fab-Ebox区分包含改变的识别序列的寡脱氧核糖核苷酸的能力方面相似。可比的胞嘧啶残基甲基化对结合的干扰表明,Fab-Ebox和TFEB都通过沿双链DNA主沟的相互作用与DNA接触。这项研究的结果表明,可以通过利用免疫球蛋白和转录因子的模块化特性来开发具有高特异性的DNA结合抗体。

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