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首页> 外文期刊>Molecules >Fabrication of Unimolecular Double-stranded DNA Microarrays on Solid Surfaces for Probing DNA-Protein/Drug Interactions
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Fabrication of Unimolecular Double-stranded DNA Microarrays on Solid Surfaces for Probing DNA-Protein/Drug Interactions

机译:在固体表面上制备单分子双链DNA微阵列以探测DNA-蛋白质/药物相互作用

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摘要

We present a novel method for fabricating unimolecular double-stranded DNA microarrays on solid surfaces, which were used to probe sequence-specific DNA/protein interactions. For manufacturing the unimolecular double-stranded DNA microarrays, two kinds of special single-stranded oligonucleotides, constant oligonucleotide and target oligonucleotide, were chemically synthesized. The constant oligonucleotides with internal aminated dT were used to capture and immobilize the target oligonucleotides onto the solid surface, and also to provide a primer for later enzymatic extension reactions, while target oligonucleotides took the role of harbouring DNA-binding sites of DNA-binding proteins. The variant target oligonucleotides were annealed and ligated with the constant oligonucleotides to form the new unimolecular oligonucleotides for microspotting. The prepared unimolecular oligonucleotides were microspotted on aldehyde-derivatized glass slides to make partial-dsDNA microarrays. Finally, the partial-dsDNA microarrays were converted into a unimolecular complete-dsDNA microarray by a DNA polymerase extension reaction. The efficiency and accuracy of the polymerase synthesis were demonstrated by the fluorescent-labeled dUTP incorporation in the enzymatic extension reaction and the restriction endonuclease digestion of the fabricated unimolecular complete-dsDNA microarray. The accessibility and specificity of the sequence-specific DNA-binding proteins binding to the immobilized unimolecular dsDNA probes were demonstrated by the binding of Cy3 labeled NF-κB (p50·p50) to the unimolecular dsDNA microarray. This unimolecular dsDNA microarray provides a general technique for high-throughput DNA-protein or DNA-drugs interactions.
机译:我们提出了一种在固体表面上制备单分子双链DNA微阵列的新颖方法,用于探测序列特异性DNA /蛋白质相互作用。为了制造单分子双链DNA微阵列,化学合成了两种特殊的单链寡核苷酸,恒定寡核苷酸和靶寡核苷酸。具有内部胺化dT的恒定寡核苷酸用于捕获目标寡核苷酸并将其固定在固体表面上,还为以后的酶促延伸反应提供了引物,而目标寡核苷酸则具有隐藏DNA结合蛋白的DNA结合位点的作用。 。将变异的目标寡核苷酸退火,并与恒定的寡核苷酸连接,以形成新的用于微点的单分子寡核苷酸。将制备的单分子寡核苷酸微点滴在醛衍生的载玻片上,制成部分dsDNA微阵列。最后,通过DNA聚合酶延伸反应将部分dsDNA微阵列转变为单分子完整dsDNA微阵列。聚合酶合成的效率和准确性通过荧光标记的dUTP掺入酶促延伸反应和限制性内切核酸酶消化制备的单分子完整dsDNA微阵列来证明。 Cy3标记的NF-κB(p50·p50)与单分子dsDNA微阵列的结合证明了序列特异性DNA结合蛋白与固定的单分子dsDNA探针结合的可及性和特异性。这种单分子dsDNA微阵列为高通量DNA蛋白或DNA药物相互作用提供了一种通用技术。

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