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含咪唑的偏嗜菌素ImPy与DNA的相互作用:与纺锤菌素相比的滴定粘度研究

DNA interaction of the imidazole-containing lexitropsin ImPy: titration viscometric study in comparison to netropsin.

作者信息

Reinert K E, Stutter E, Zimmer C, Lown J W

机构信息

Institute of Molecular Biology, Friedrich-Schiller-University, Jena, Germany.

出版信息

J Biomol Struct Dyn. 1995 Feb;12(4):847-55. doi: 10.1080/07391102.1995.10508780.

Abstract

The imidazole (Im) containing lexitropsin ImPy related to netropsin (Nt) is a sequence reading DNA ligand which, in contrast to Nt, permits binding to a GC base pair. The ImPy induced DNA conformational changes differ significantly from those induced by Nt as monitored by titration viscometry, although interaction modes have also been resolved with boundaries at the same ligand to DNA phosphate ratio, r. Evidently ImPy covers similar binding sites (in the same sequence) as Nt for natural calf thymus DNA at r < 0.023. This result suggests that the preferred binding sites of ImPy are A tracts (cf. K.E.R. JBSD 9(1993) 973), in agreement with previous data. The respective DNA coil expansion, most probably caused by unbending (l.c.), is similar but smaller compared to the Nt-DNA interaction. These results again suggest that, at low r values, the van der Waals interaction in the narrowed minor groove of AT clusters provides a dominating energy contribution to ImPy binding. At r > 0.03 the DNA coil expansion increases to extremely high values in that r range where Nt binding (to mixed AT/GC sequences) induces no effect at all owing to steric hindrance with the amino group of guanine. On the basis of many quantitative results for the Nt-DNA systems these effects can be understood in terms of an unbending of intrinsic helix bends (l.c.). They are of considerable interest in connection with the ability of such compounds to influence the direction of the local regulatory relevant DNA curvature.

摘要

与纺锤菌素(Nt)相关的含咪唑(Im)的列克西特罗辛ImPy是一种序列阅读DNA配体,与Nt不同,它能够与GC碱基对结合。通过滴定粘度法监测,ImPy诱导的DNA构象变化与Nt诱导的变化有显著差异,尽管在相同的配体与DNA磷酸比r下,相互作用模式也已确定。显然,在r < 0.023时,对于天然小牛胸腺DNA,ImPy与Nt覆盖相似的结合位点(在相同序列中)。这一结果表明,ImPy的优先结合位点是A序列(参见K.E.R. JBSD 9(1993) 973),与先前的数据一致。各自的DNA螺旋膨胀,很可能是由解弯曲(即l.c.)引起的,与Nt-DNA相互作用相似但较小。这些结果再次表明,在低r值时,AT簇狭窄小沟中的范德华相互作用为ImPy结合提供了主要的能量贡献。在r > 0.03时,DNA螺旋膨胀增加到极高的值,而在该r范围内,Nt与(混合的AT/GC序列)结合由于鸟嘌呤氨基的空间位阻根本没有影响。基于Nt-DNA系统的许多定量结果,这些效应可以用内在螺旋弯曲的解弯曲(即l.c.)来理解。这些效应与这类化合物影响局部调节相关DNA曲率方向的能力有关,具有相当大的研究意义。

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