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Novel multistranded, alternative, plasmid and helical transitional DNA and RNA microarrays: implications for therapeutics.

机译:新型多链,替代,质粒和螺旋过渡DNA和RNA微阵列:对治疗的影响。

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摘要

Novel multistranded and alternative DNA, RNA and plasmid microarrays (transitional structural nucleic acid microarrays) have been developed that allows for the immobilization of intact, nondenatured, double-stranded DNA, double-stranded RNA, and alternative and multistranded nucleic acids. It also allows for the study of transitional changes that occur in the structure of DNA and RNA. Alternative types of DNA, RNA and multistranded nucleic acids are immobilized by a variety of different surface chemistries (i.e., noncovalent or covalent) onto a novel substrate surface. This technology represents the next generation of microarrays, which will aid in the characterization of nucleic acid structure and function, and accelerate the discovery of drugs that bind to nucleic acids. In addition, we demonstrate four novel techniques that are the first practical applications of the microarray, that is, transitional structural chemogenomics, transitional structural chemoproteomics, transitional structural pharmacogenomics and transitional structural pharmacoproteomics. These novel nucleic acid microarrays, together with pharmacogenomics, can be used to improve the study of DNA and RNA structure, gene expression, drug development and treatment of various diseases.
机译:已经开发了新颖的多链和替代DNA,RNA和质粒微阵列(过渡结构核酸微阵列),其允许固定完整的,非变性的,双链DNA,双链RNA以及替代和多链核酸。它还可以研究DNA和RNA结构中发生的过渡变化。 DNA,RNA和多链核酸的替代类型通过各种不同的表面化学(即非共价或共价)固定在新型底物表面上。该技术代表了下一代微阵列,它将有助于表征核酸的结构和功能,并加速发现与核酸结合的药物。另外,我们展示了四种新技术,它们是微阵列的首次实际应用,即过渡结构化学基因组学,过渡结构化学蛋白质组学,过渡结构药物基因组学和过渡结构药物基因组学。这些新颖的核酸微阵列与药物基因组学一起,可用于改善对DNA和RNA结构,基因表达,药物开发以及各种疾病的治疗的研究。

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