...
首页> 外文期刊>Nucleic acids research >Crystallographic studies of metal ion - DNA interactions: different binding modes of cobalt(II), copper(II) and barium(II) to N7of guanines in Z-DNA and a drug-DNA complex
【24h】

Crystallographic studies of metal ion - DNA interactions: different binding modes of cobalt(II), copper(II) and barium(II) to N7of guanines in Z-DNA and a drug-DNA complex

机译:金属离子与DNA相互作用的晶体学研究:Z-DNA和药物-DNA络合物中钴(II),铜(II)和钡(II)与鸟嘌呤N7的不同结合模式

获取原文
   

获取外文期刊封面封底 >>

       

摘要

Metal ion coordination to nucleic acids is not only required for charge neutralization, it is also essential for the biological function of nucleic acids. The structural impact of different metal ion coordinations on DNA helices is an open question. We carried out X-ray diffraction analyses of the interactions of the two transition metal Ions Co(ll) and Cu(ll) and an alkaline earth metal Ion Ba(ll), with DNA of different conformations. In crystals, Co(ll) Ion binds exclusively at the N7 position of guanine bases by direct coordination. The coordination geometry around Co(ll) is octahedral, although some sites have an incomplete hydration shell. The averaged Co-N7 bond distance is 2.3.A. The averaged Co-N7-C8 angle Is 121°, significantly smaller than the value of 128° If the Cc/N7 vector were to bisect the C5-N7-C8 bond angle. Model building of Co(ll) binding to guanine N7 In B/DNA indicates that the coordinated waters in the axial positions would have a van der Waals clash with the neighboring base on the 5' side. In contrast, the major groove of A-DNA does not have enough room to accommodate the entire hydration shell. This suggests that Co(ll) binding to either B-DNA or A-DNA may induce significant conformational changes. The Z-DNA structure of Cu(ll)-soaked CGCGTG crystal revealed that the Cu(ll) Ion is bis-coordinated to N7 position of G10 and 'G12 (denotes a symmetry-related position) bases with a trigonal blpyramld geometry, suggesting a possible N7-Cu-N7 crosslinking mechanism. A similar bis-coordination to two guanines has also been seen in the interaction of Ba(ll) in m'CGUAmSCG Z-DNA crystal and of Ba(ll) with two other Z-DNA crystals.
机译:金属离子与核酸的配位不仅是电荷中和所必需的,而且对于核酸的生物学功能也是必不可少的。不同金属离子配位对DNA螺旋结构的影响是一个悬而未决的问题。我们对两种过渡金属离子Co(II)和Cu(II)与碱土金属离子Ba(II)之间的相互作用进行了X射线衍射分析,分析了不同构象的DNA。在晶体中,Co(II)离子通过直接配位专门结合在鸟嘌呤碱基的N 7 位置。尽管某些位置的水合壳不完整,但Co(II)周围的配位几何形状为八面体。 Co-N 7 的平均键距为2.3.A。 Co-N 7 -C 8 的平均角度为121°,大大小于Cc / N 7 向量的128°值将C 5 -N 7 -C 8 的键角一分为二。 Co(II)与鸟嘌呤N 7 在B / DNA中结合的模型建立表明,轴向位置的配位水与5'侧的相邻碱基发生范德华力碰撞。相反,A-DNA的主要凹槽没有足够的空间容纳整个水合壳。这表明Co(II)与B-DNA或A-DNA的结合可诱导显着的构象变化。 Cu(II)浸泡的CGCGTG晶体的Z-DNA结构表明Cu(II)离子双配位于G10和'G12的N 7 位置(表示对称相关的位置)具有三角形blpyramld几何形状的碱基,表明可能存在N 7 -Cu-N 7 交联机理。在m'CGUAmSCG Z-DNA晶体中Ba(II)和Ba(II)与另外两个Z-DNA晶体的相互作用中也发现了与两个鸟嘌呤相似的双配位。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号