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首页> 外文期刊>Biopolymers: Original Research on Biomolecules and Biomolecular Assemblies >Qualitative Analysis of Sequence Specific Binding of Flavones to DNA Using Restriction Endonuclease Activity Assays
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Qualitative Analysis of Sequence Specific Binding of Flavones to DNA Using Restriction Endonuclease Activity Assays

机译:黄酮与DNA的序列特异性结合的定性分析使用限制性内切酶活性测定

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摘要

Flavones, found in nature as secondary plant metabolites, have shown efficacy as anti-cancer agents. We have examined the binding of two flavones, 5,7-dihydroxy- 3,6,8-trimethoxy-2-phenyl-4H-chromen-4-one (5,7- dihydroxy-3,6,8-trimethoxy flavone; FlavA) and 3,5- dihydroxy-6,7,8-trimethoxy-2-phenyl-4H-chromen-4-one (3,5-dihydroxy-6,7,8-trimethoxy flavone; FlavB), to phiX174 RF DNA using restriction enzyme activity assays employing the restriction enzymes Alw44, AvaII, BssHII, DraI, MluI, NarI, NciI, NruI, PstI, and XhoI. These enzymes possess differing target and flanking sequences allowing for observation of sequence specificity analysis. Using restriction enzymes that cleave once with a mixture of supercoiled and relaxed DNA substrates provides for observation of topological effects on binding. FlavA and FlavB show differing sequence specificities in their respective binding to phiX. For example, with relaxed DNA, FlavA shows inhibition of cleavage with DraI (reaction site 5'TTTAAA) but not BssHII (5'GCGCGC) while FlavB shows the opposite results. Evidence for tolological specificity is also observed, Molecular modeling and conformational analysis of the flavones suggests that the phenyl ring of FlavB is coplanar with the flavonoid ring while the phenyl ring of FlavA is at an angle relative to the flavonoid ring. This may account for aspects of the observed sequence and topological specificities in the effects on restriction enzyme activity.
机译:在自然界中以植物次生代谢产物形式存在的黄酮已显示出作为抗癌药的功效。我们已经检查了两种黄酮的结合,即5,7-二羟基-3,6,8-三甲氧基-2-苯基-4H-铬烯-4-酮(5,7-二羟基-3,6,8-三甲氧基黄酮; FlavA)和3,5-二羟基-6,7,8-三甲氧基-2-苯基-4H-chromen-4-one(3,5-二羟基-6,7,8-三甲氧基黄酮; FlavB)至phiX174 RF使用限制酶Alw44,AvaII,BssHII,DraI,MluI,NarI,NciI,NruI,PstI和XhoI进行限制酶活性测定的DNA。这些酶具有不同的靶序列和侧翼序列,可以观察序列特异性分析。使用用超螺旋和松弛的DNA底物混合物裂解一次的限制性内切酶可观察到拓扑结构对结合的影响。 FlavA和FlavB在各自与phiX的结合中显示出不同的序列特异性。例如,在松弛的DNA中,FlavA显示对DraI(反应位点5'TTTAAA)的切割具有抑制作用,而对BssHII(5'GCGCGC)则不具有抑制作用,而FlavB显示相反的结果。还观察到了抗药性的证据。黄酮的分子模型和构象分析表明,FlavB的苯环与类黄酮环共面,而FlavA的苯环相对于类黄酮环成一定角度。这可以解释观察到的序列和拓扑特异性对限制酶活性的影响。

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