Malina Jaroslav, Hannon Michael J, Brabec Viktor
Institute of Biophysics, Academy of Sciences of the Czech Republic, v.v.i., Královopolská 135, CZ-61265 Brno, Czech Republic.
Nucleic Acids Res. 2008 Jun;36(11):3630-8. doi: 10.1093/nar/gkn244. Epub 2008 May 8.
Fe(2)L(3) (L = C(25)H(20)N(4)) is a synthetic tetracationic supramolecular cylinder (with a triple helical architecture) that targets the major groove of DNA and can bind to DNA Y-shaped junctions. To explore the DNA-binding mode of Fe(2)L(3), we examine herein the interactions of pure enantiomers of this cylinder with DNA by biochemical and molecular biology methods. The results have revealed that, in addition to the previously reported bending of DNA, the enantiomers extensively unwind DNA, with the M enantiomer being the more efficient at unwinding, and exhibit preferential binding to regular alternating purine-pyrimidine sequences, with the M enantiomer showing a greater preference. Also, interestingly, the DNA binding of bulky cylinders Fe(2)(L-CF(3))(3) and Fe(2)(L-Ph)(3) results in no DNA unwinding and also no sequence preference of their DNA binding was observed. The observation of sequence-preference in the binding of these supramolecular cylinders suggests that a concept based on the use of metallosupramolecular cylinders might result in molecular designs that recognize the genetic code in a sequence-dependent manner with a potential ability to affect the processing of the genetic code.
Fe(2)L(3)(L = C(25)H(20)N(4))是一种合成的四价阳离子超分子圆柱体(具有三螺旋结构),它靶向DNA的大沟并能与DNA Y形接头结合。为了探究Fe(2)L(3)与DNA的结合模式,我们在此通过生化和分子生物学方法研究了该圆柱体纯对映体与DNA的相互作用。结果表明,除了先前报道的DNA弯曲外,对映体还能广泛地使DNA解旋,其中M对映体在解旋方面更有效,并且对规则交替的嘌呤 - 嘧啶序列表现出优先结合,M对映体表现出更大的偏好。此外,有趣的是,大体积圆柱体Fe(2)(L - CF(3))(3)和Fe(2)(L - Ph)(3)与DNA的结合不会导致DNA解旋,并且未观察到它们与DNA结合的序列偏好。这些超分子圆柱体结合中序列偏好的观察表明,基于金属超分子圆柱体的概念可能会导致分子设计,以序列依赖的方式识别遗传密码,并具有潜在影响遗传密码加工的能力。