苯基环取代基对新型双苯并咪唑和特苯并咪唑DNA微槽结合特性的电子效应评价:配体-DNA相互作用的合成和光谱研究。

Akash K Jain, Sharad K Gupta, Vibha Tandon
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引用次数: 6

摘要

合成了几种小凹槽结合剂(MGBD),研究了它们与DNA的结合行为和序列特异性。为了进一步了解MGBD与DNA的结合作用,我们合成了一些新的苯并咪唑,它们具有供电子(OCH(3), OCH(2)CH(3), OH, O(CH(2))(3) nh2)和苯基环上的吸电子氰基。利用电喷雾质谱(ESI-MS)、吸收光谱、荧光光谱和圆二色(CD)光谱,研究了这些新型苯并咪唑与母体化合物Hoechst 33342的相互作用,以及两个富含A-T [d(GA(5)T(5)C)和d(CGCA(3)T(3)G)]和一个富含G-C [d(GCATGGCCATGC)]的核苷酸序列。具有供电子基团的双取代类似物比Hoechst 33342形成更稳定的配体-DNA复合物,而具有吸电子氰基的苯并咪唑形成的配体-DNA复合物相对不稳定。ESI-MS还提供了关于A-T序列选择性的可靠信息,因为我们没有观察到G-C序列与母体以及新配体的质量的任何信号。类似的ESI-MS研究表明,Hoechst 33342、ETBBZ和MMBBZ与d(GA(5)T(5)C)双相形成2:1化学计量的配合物,而其余的配体与d(GA(5)T(5)C)形成1:1化学计量的配合物。因此,本研究为苯基环上不同取代的小槽结合苯并咪唑类似物的结合行为差异提供了合理的解释。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Evaluation of electronic effect of phenyl ring substituents on the DNA minor groove binding properties of novel bis and terbenzimidazoles: synthesis and spectroscopic studies of ligand-DNA interaction.

Several minor groove binding agents (MGBD) were synthesized to study their binding behaviors and sequence specificity with DNA. In order to further understand the binding interactions of the MGBD to DNA, we have synthesized some novel benzimidazoles, which have electron donating (OCH(3), OCH(2)CH(3), OH, O(CH(2))(3)NH(2)) and electron withdrawing cyano groups on the phenyl ring. The interaction of these new benzimidazoles along with parent compounds Hoechst 33342 have been studied with CT DNA, two A-T rich [d(GA(5)T(5)C) and d(CGCA(3)T(3)G)] and one G-C rich [d(GCATGGCCATGC)] oligonucleotide sequences using electrospray ionization mass spectrometry (ESI-MS), absorption, fluorescence, and circular dichroism (CD) spectroscopy. Bisubstituted analogs, which have electron-donating groups, were found to form more stable ligand-DNA complex than Hoechst 33342, while the benzimidazole with electron withdrawing cyano group resulted comparatively in less stable ligand DNA complex. The ESI-MS also gave reliable information about the A-T sequence selectivity as we did not observe any signal with G-C sequence in mass with parent as well as novel ligands. Similar studies with ESI-MS suggest that Hoechst 33342, ETBBZ, and MMBBZ form complexes of 2:1 stoichiometry with d(GA(5)T(5)C) duplex while rest of the ligands form complexes of 1:1 stoichiometry with d(GA(5)T(5)C). Thus, this present study provides the rationalization for the difference in binding behaviors of minor groove binding benzimidazole analogs having different substitution on the phenyl ring.

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来源期刊
Oligonucleotides
Oligonucleotides 生物-生化与分子生物学
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