Ismail M A, Rodger P M, Rodger A
a Department of Chemistry , University of Warwick , Coventry , CV4 7AL , UK.
J Biomol Struct Dyn. 2000;17 Suppl 1:335-48. doi: 10.1080/07391102.2000.10506639.
Abstract Self assembly in biological systems is increasingly being recognised as an important phenomenon. We have examined two model systems: the cationic meso-substituted free base porphyrin derivative frans-bis-(4-N-methylpyridiniumyl)diphenyl porphyrin (t-H(2)P) and Hoechst 33258 (Hoechst) both of which were known to assemble on DNA. t-H(2)P self-assembles in solution under appropriate conditions, whereas Hoechst does not. By varying ionic strength and ligand: DNA mixing ratios, these features together with their different steric constraints have led to quite different DNA binding behaviour. Hoechst on polyd(A-T) stacks across the major groove, probably after filling its well established monomeric minor groove binding mode. By way of contrast the Hoechst/polyd(G-C) self-assembled aggregates involve partially intercalated molecules stacking in the major groove. The binding mode adopted by t-H(2)P with polyd(A-T) and polyd(G-C) appears to be kinetically controlled and to be determined by the pre-existence of monomer binding and/or ligand stacks in solution. With polyd(A-T) the modes adopted both involve displacing the DNA bases to be more parallel than perpendicular to the helix axis. One is probably based on porphyrin intercalation and the other on minor groove binding. Resonance light scattering, linear dichroism, circular dichroism, normal absorption and fluorescence spectroscopies have been used to characterise the self-assembly in these systems.
摘要 生物系统中的自组装越来越被认为是一种重要现象。我们研究了两个模型系统:阳离子中位取代的游离碱卟啉衍生物反式-双-(4-N-甲基吡啶基)二苯基卟啉(t-H₂P)和Hoechst 33258(Hoechst),已知它们都会在DNA上组装。t-H₂P在适当条件下在溶液中自组装,而Hoechst则不会。通过改变离子强度和配体与DNA的混合比例,这些特性以及它们不同的空间限制导致了截然不同的DNA结合行为。Hoechst在聚[d(A-T)]₂上跨大沟堆积,可能是在填充其既定的单体小沟结合模式之后。相比之下,Hoechst/聚[d(G-C)]₂自组装聚集体涉及部分插入分子在大沟中堆积。t-H₂P与聚[d(A-T)]₂和聚[d(G-C)]₂采用的结合模式似乎受动力学控制,并由溶液中单体结合和/或配体堆积的预先存在决定。对于聚[d(A-T)]₂,采用的模式都涉及取代DNA碱基,使其比垂直于螺旋轴更平行于螺旋轴。一种可能基于卟啉插入,另一种基于小沟结合。共振光散射、线性二色性、圆二色性、正常吸收和荧光光谱已用于表征这些系统中的自组装。