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环的方向对四链体与TMPyP4相互作用的影响。

Effect of loop orientation on quadruplex-TMPyP4 interaction.

作者信息

Arora Amit, Maiti Souvik

机构信息

Proteomics and Structural Biology Unit, Institute of Genomics and Integrative Biology, CSIR, Mall Road, Delhi 110 007, India.

出版信息

J Phys Chem B. 2008 Jul 10;112(27):8151-9. doi: 10.1021/jp711608y. Epub 2008 Jun 14.

Abstract

G-quadruplexes are believed to be potential targets for therapeutic intervention and this has resulted in designing of various quadruplex interacting ligands. Moreover, reports about existence of quadruplex forming sequences across the genome have propelled greater interest in understanding their interaction with small molecules. An intramolecular quadruplex sequence can adopt different conformations, owing to different orientation of loops in the structure. The differences in the loop orientation can affect their molecular recognition. Herein, we have studied the interaction of 5,10,15,20-tetrakis(1-methyl-4-pyridyl)-21H, 23H-porphine (TMPyP4), a well-known G quadruplex binding ligand with three DNA quadruplexes differing in loop orientations. Results obtained from UV, ITC, and SPR studies have coherently revealed that the TMPyP4 molecule shows preferential binding to parallel G-quadruplex ( c-myc and c-kit) over its antiparallel counterpart (human telomeric). The binding affinity for parallel quadruplex was (10(7)) 1 order of magnitude higher than that for antiparallel DNA quadruplex (10 ). The study shows two binding modes, stronger binding (10(7)) of TMPyP4 involving end stacking and a weaker external binding (10 ), while TMPyP4 shows only one binding mode with duplex with a binding affinity of the order of 10(6). Overall, the study emphasizes that differences in the loop orientation give rise to different conformations of quadruplex, which in turn govern its binding to small molecules, and thereby play a pivotal role in molecular recognition.

摘要

G-四链体被认为是治疗干预的潜在靶点,这促使人们设计了各种与四链体相互作用的配体。此外,关于全基因组中四链体形成序列存在的报道激发了人们对理解它们与小分子相互作用的更大兴趣。由于结构中环的不同取向,分子内四链体序列可以采用不同的构象。环取向的差异会影响它们的分子识别。在此,我们研究了5,10,15,20-四(1-甲基-4-吡啶基)-21H,23H-卟啉(TMPyP4),一种著名的G-四链体结合配体,与三种环取向不同的DNA四链体之间的相互作用。紫外、等温滴定量热法和表面等离子体共振研究结果一致表明,TMPyP4分子对平行G-四链体(c-myc和c-kit)的结合优于其反平行对应物(人类端粒)。对平行四链体的结合亲和力比对反平行DNA四链体的结合亲和力高一个数量级(10^7对10^6)。该研究显示了两种结合模式,TMPyP4较强的结合(10^7)涉及末端堆积,较弱的外部结合(10^6),而TMPyP4与双链体只有一种结合模式,结合亲和力约为10^6。总体而言,该研究强调环取向的差异导致四链体不同的构象,进而决定其与小分子的结合,从而在分子识别中起关键作用。

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