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Hybridization of 2'-ribose modified mixed-sequence oligonucleotides: thermodynamic and kinetic studies.

机译:2'-核糖修饰的混合序列寡核苷酸的杂交:热力学和动力学研究。

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摘要

In this study, we characterize the thermodynamics of hybridization, binding kinetics and conformations of four ribose-modified (2'-fluoro, 2'-O-propyl, 2'-O-methoxyethyl and 2'-O-aminopropyl) decameric mixed-sequence oligonucleotides. Hybridization to the complementary non-modified DNA or RNA decamer was probed by fluorescence and circular-dichroism spectroscopy and compared to the same duplex formed between two non-modified strands. The thermal melting points of DNA-DNA duplexes were increased by 1.8, 2.2, 0.3 and 1.3 degrees C for each propyl, methoxyethyl, aminopropyl and fluoro modification, respectively. In the case of DNA-RNA duplexes, the melting points were increased by 3.1, 4.1 and 1.0 degrees C for each propyl, methoxyethyl and aminopropyl modification, respectively. The high stability of the duplexes formed with propyl-, methoxyethyl- and fluoro-modified oligonucleotides correlated with high preorganization in these single-strands. Despite higher thermodynamic duplex stability, hybridization kinetics to complementary DNA or RNA was slower for propyl- and methoxyethyl-modified oligonucleotides than for the non-modified control. In contrast, the positively-charged aminopropyl-modified oligonucleotide showed rapid binding to the complementary DNA or RNA.
机译:在这项研究中,我们表征了四个核糖修饰的(2'-氟,2'-O-丙基,2'-O-甲氧基乙基和2'-O-氨基丙基)杂交的杂交的热力学,结合动力学和构象。序列寡核苷酸。通过荧光和圆二色性光谱探测与互补的未修饰的DNA或RNA decamer的杂交,并与两条未修饰的链之间形成的相同双链体进行比较。对于每个丙基,甲氧基乙基,氨基丙基和氟修饰,DNA-DNA双链体的热熔点分别提高了1.8、2.2、0.3和1.3摄氏度。在DNA-RNA双链体的情况下,每个丙基,甲氧基乙基和氨基丙基修饰的熔点分别提高3.1、4.1和1.0摄氏度。由丙基,甲氧基乙基和氟修饰的寡核苷酸形成的双链体的高稳定性与这些单链中的高预组织有关。尽管具有更高的热力学双链体稳定性,但是丙基和甲氧基乙基修饰的寡核苷酸与互补DNA或RNA的杂交动力学比未修饰的对照慢。相反,带正电荷的氨丙基修饰的寡核苷酸显示出与互补DNA或RNA的快速结合。

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