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SequenceProgramming with Dynamic Boronic Acid/CatecholBinary Codes

机译:序列用动态硼酸/邻苯二酚编程二进制码

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摘要

The development of a synthetic code that enables a sequence programmable feature like DNA represents a key aspect toward intelligent molecular systems. We developed herein the well-known dynamic covalent interaction between boronic acids (BAs) and catechols (CAs) into synthetic nucleobase analogs. Along a defined peptide backbone, BA or CA residues are arranged to enable sequence recognition to their complementary strand. Dynamic strand displacement and errors were elucidated thermodynamically to show that sequences are able to specifically select their partners. Unlike DNA, the pH dependency of BA/CA binding enables the dehybridization of complementary strands at pH 5.0. In addition, we demonstrate the sequence recognition at the macromolecular level by conjugating the cytochrome c protein to a complementary polyethylene glycol chain in a site-directed fashion.
机译:能够实现诸如DNA的序列可编程功能的合成代码的开发代表了智能分子系统的关键方面。我们在本文中将硼酸(BAs)和儿茶酚(CAs)之间的众所周知的动态共价相互作用发展为合成核碱基类似物。沿着定义的肽主链,BA或CA残基排列成能够对其互补链进行序列识别。热力学阐明了动态链置换和错误,以表明序列能够特异性选择其伴侣。与DNA不同,BA / CA结合的pH依赖性使得在pH 5.0时互补链能够去杂化。另外,我们通过定点方式将细胞色素c蛋白缀合到互补的聚乙二醇链上,证明了在大分子水平上的序列识别。

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