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首页> 外文期刊>Bioorganic and medicinal chemistry >Enantioselective binding of chiral 1,14-dimethyl[5]helicene-spermine ligands with B- and Z-DNA
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Enantioselective binding of chiral 1,14-dimethyl[5]helicene-spermine ligands with B- and Z-DNA

机译:手性1,14-二甲基[5]]烯-精胺配体与B-和Z-DNA的对映选择性结合

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摘要

Duplex DNA adopts a right-handed B-DNA conformation under physiological conditions. Z-DNA, meanwhile, has a left-handed helical structure and is in equilibrium with right-handed B-DNA. We recently reported that the bisnaphthyl maleimide-spermine conjugate (1) induced a B- to Z-DNA transition with high efficiency at low salt concentrations. It was also found that the bisnaphthyl ligand (1) spontaneously transformed into the corresponding [5]helicene derivative (2). Because [5]helicene 2 can potentially be chiral and because the chiral discrimination of B- and Z-DNA is also of interest, we became interested in whether enatiomerically pure [5]helicene-spermine conjugates might discriminate the chirality of B- or Z-DNA. In this study, we have demonstrated an efficient synthesis of chiral DNA-binding ligands by the conjugation of a [5]helicene unit with a spermine unit. These chiral helicene ligands exhibited recognition of B- and Z-DNA, with (P)-3 displaying preference for B-DNA and (M)-3 for Z-DNA. The characteristic features of the helicene-spermine ligands developed in this study include two points: the cationic spermine portion produces electrostatic interactions along the phosphate backbone of the minor groove, and the helicene forms complexes in an end-stacking mode. Such binding modes, together with the thermodynamic parameters, account for the mode of chiral recognition of (P)- and (M)-3 for B- and Z-DNA.
机译:双链DNA在生理条件下采用右手B-DNA构象。同时,Z-DNA具有左旋螺旋结构,并且与右旋B-DNA处于平衡状态。我们最近报道,双萘基马来酰亚胺-精胺结合物(1)在低盐浓度下能高效诱导B-Z-DNA过渡。还发现双萘基配体(1)自发转化为相应的[5]]烯衍生物(2)。因为[5] helicene 2可能是手性的,并且因为B-和Z-DNA的手性区分也令人感兴趣,所以我们对是否存在对映体纯的[5] helene-精胺缀合物可以区分B-或Z的手性表示兴趣-脱氧核糖核酸。在这项研究中,我们已经证明通过[5] ic烯单元与精胺单元的缀合可以有效合成手性DNA结合配体。这些手性螺旋烯配体表现出对B-和Z-DNA的识别,其中(P)-3显示出对B-DNA的偏好,(M)-3显示出对Z-DNA的偏好。在这项研究中开发的螺旋烯-精胺配体的特征包括两点:阳离子精胺部分沿小沟的磷酸盐骨架产生静电相互作用,而螺旋烯以末端堆积的方式形成复合物。此类结合模式与热力学参数一起解释了B-DNA和Z-DNA手性识别(P)-和(M)-3的模式。

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