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Terminal Protection of Small Molecule-Linked DNA: A Versatile Biosensor Platform for Protein Binding and Gene Typing Assay

机译:小分子连接的DNA的末端保护:蛋白质结合和基因分型测定的多功能生物传感器平台。

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Assays of small molecule-protein interactions are of tremendous importance in chemical genetics, molecular diagnostics, and drug development. This work reports a new finding of generalized terminal protection that small molecule-DNA chimeras are protected from degradation by various DNA exonucleases, when the small molecule moieties are bound to their protein targets. This generalization converts small molecule-protein interaction assays into the detection of DNA of various structures, affording a useful mechanism for the analytics of small molecules. On the basis of this mechanism, a label-free biosensor strategy has been developed for a homogeneous assay of protein-small molecule interactions based on the fluorescence staining detection. Also, a label-free SNP genotyping technique is proposed based on polymerase extension of a single nucleotide with a small molecule label. The developed techniques are demonstrated using a model protein-small molecule system of biotin/streptavidin and a model SNP system of human beta-globin gene around the position of codon 39. The results revealed that the protein--small molecule interaction assay strategy shows dynamic responses in the concentration range from 0.5 to 100 nM with a detection limit of 0.1 nM, and the SNP typing technique gives dynamic responses in the concentration range from 0.1 to 200 nM with a detection limit of 0.02 nM. Besides desirable sensitivity, the developed strategies also offer high selectivity, excellent reproducibility, low cost, and simplified operations, implying that these techniques may hold considerable potential for molecular diagnostics and genomic research.
机译:小分子-蛋白质相互作用的测定在化学遗传学,分子诊断和药物开发中非常重要。这项工作报告了一项新的广义末端保护的发现,即当小分子部分与它们的蛋白质靶标结合时,小分子-DNA嵌合体会受到各种DNA外切核酸酶的保护而不会降解。这种概括将小分子-蛋白质相互作用分析转换为各种结构DNA的检测,从而为分析小分子提供了有用的机制。基于这种机制,已经开发了一种无标记生物传感器策略,用于基于荧光染色检测的蛋白质-小分子相互作用的均相测定。另外,基于具有小分子标记的单核苷酸的聚合酶延伸,提出了无标记的SNP基因分型技术。使用生物素/链霉亲和素的蛋白质-小分子模型系统和密码子39周围的人β-珠蛋白基因的SNP模型系统证明了开发的技术。结果表明,蛋白质-小分子相互作用测定策略显示出动态的SNP分型技术在浓度范围从0.5到100 nM的情况下具有0.1 nM的检测限,SNP分型技术在浓度范围从0.1到200 nM的情况下具有0.02 nM的动态响应。除了理想的灵敏度外,已开发的策略还具有高选择性,出色的重现性,低成本和简化的操作,这意味着这些技术在分子诊断和基因组研究中可能具有相当大的潜力。

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