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Utilising the left-helical conformation of L-DNA for analysing different marker types on a single universal microarray platform

机译:利用L-DNA的左螺旋构象在单个通用微阵列平台上分析不同的标记物类型

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摘要

L-DNA is the perfect mirror-image form of the naturally occurring D-conformation of DNA. Therefore, L-DNA duplexes have the same physical characteristics in terms of solubility, duplex stability and selectivity as D-DNA but form a left-helical double-helix. Because of its chiral difference, L-DNA does not bind to its naturally occurring D-DNA counterpart, however. We analysed some of the properties that are typical for L-DNA. For all the differences, L-DNA is chemically compatible with the D-form ofDNA, so that chimeric molecules can be synthesized. We take advantage of the characteristics of L-DNA toward the establishment of a universal microarray that permits the analysis of different kinds of molecular diagnostic information in a single experiment on a single platform, in various combinations. Typical results for the measurement of transcript level variations, genotypic differences and DNA–protein interactions are presented. However, on the basis of the characteristic features of L-DNA, also other applications of this molecule type are discussed.
机译:L-DNA是DNA天然D构象的完美镜像形式。因此,就溶解度,双链体稳定性和选择性而言,L-DNA双链体具有与D-DNA相同的物理特性,但形成了左螺旋双螺旋。然而,由于其手性差异,L-DNA不与其天然存在的D-DNA对应物结合。我们分析了L-DNA的一些典型特性。由于所有差异,L-DNA在化学上与D型DNA相容,因此可以合成嵌合分子。我们利用L-DNA的特性来建立通用的微阵列,该阵列允许在单个平台上的单个实验中以各种组合方式分析不同种类的分子诊断信息。给出了测量转录水平变化,基因型差异和DNA-蛋白质相互作用的典型结果。然而,基于L-DNA的特征,还讨论了这种分子类型的其他应用。

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