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首页> 外文期刊>Nucleic Acids Research >Shielding effect of monovalent and divalent cations on solid-phase DNA hybridization: surface plasmon resonance biosensor study
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Shielding effect of monovalent and divalent cations on solid-phase DNA hybridization: surface plasmon resonance biosensor study

机译:一价和二价阳离子对固相DNA杂交的屏蔽作用:表面等离子体共振生物传感器研究

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摘要

Solid-phase hybridization, i.e. the process of recognition between DNA probes immobilized on a solid surface and complementary targets in a solution is a central process in DNA microarray and biosensor technologies. In this work, we investigate the simultaneous effect of monovalent and divalent cations on the hybridization of fully complementary or partly mismatched DNA targets to DNA probes immobilized on the surface of a surface plasmon resonance sensor. Our results demonstrate that the hybridization process is substantially influenced by the cation shielding effect and that this effect differs substantially for solid-phase hybridization, due to the high surface density of negatively charged probes, and hybridization in a solution. In our study divalent magnesium is found to be much more efficient in duplex stabilization than monovalent sodium (15 mM Mg2+ in buffer led to significantly higher hybridization than even 1 M Na+). This trend is opposite to that established for oligonucleotides in a solution. It is also shown that solid-phase duplex destabilization substantially increases with the length of the involved oligonucleotides. Moreover, it is demonstrated that the use of a buffer with the appropriate cation composition can improve the discrimination of complementary and point mismatched DNA targets.
机译:固相杂交,即固定在固体表面的DNA探针与溶液中互补靶标之间的识别过程,是DNA微阵列和生物传感器技术的核心过程。在这项工作中,我们调查了单价和二价阳离子对完全互补或部分错配的DNA靶与固定在表面等离振子共振传感器表面的DNA探针杂交的同时影响。我们的结果表明,杂交过程受阳离子屏蔽作用的影响很大,并且由于带负电荷的探针的高表面密度以及溶液中的杂交作用,这种作用对于固相杂交也有很大不同。在我们的研究中,发现二价镁在双链稳定化方面比单价钠有效得多(缓冲液中15 mM Mg2 +导致比1 M Na +显着更高的杂交)。该趋势与溶液中寡核苷酸所建立的趋势相反。还显示固相双链体去稳定作用随所涉及的寡核苷酸的长度显着增加。此外,已证明使用具有适当阳离子组成的缓冲液可以改善互补和点错配的DNA靶标的区分。

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