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双(喹吖啶)大环化合物对G-四链体端粒DNA的选择性识别

Selective recognition of G-qQuadruplex telomeric DNA by a bis(quinacridine) macrocycle.

作者信息

Teulade-Fichou Marie-Paule, Carrasco Carolina, Guittat Lionel, Bailly Christian, Alberti Patrizia, Mergny Jean-Louis, David Arnaud, Lehn Jean-Marie, Wilson W David

机构信息

Laboratoire de Chimie des Interactions Moléculaires, Collège de France, CNRS UPR 285, 11 place Marcelin Berthelot, 75005 Paris, France.

出版信息

J Am Chem Soc. 2003 Apr 23;125(16):4732-40. doi: 10.1021/ja021299j.

Abstract

The interaction of G-quadruplex DNA with the macrocyclic compound BOQ1, which possesses two dibenzophenanthroline (quinacridine) subunits, has been investigated by a variety of methods. The oligonucleotide 5'-A(GGGT(2)A)(3)G(3), which mimics the human telomeric repeat sequence and forms an intramolecular quadruplex, was used as one model system. Equilibrium binding constants measured by biosensor surface plasmon resonance (SPR) methods indicate a high affinity of the macrocycle for the quadruplex conformation (K > 1 x 10(7) M(-)(1)) with two equivalent binding sites. The affinity of BOQ1 for DNA duplexes is at least 1 order of magnitude lower. In addition, the macrocycle is more selective than the monomeric control compound (MOQ2), which is not able to discriminate between the two DNA structures (K(duplex) approximately K(quadruplex) approximately 10(6) M(-)(1)). Strong binding of BOQ1 to G4 DNA sequences was confirmed by fluorometric titrations with a tetraplex-forming oligonucleotide. Competition dialysis experiments with a panel of different DNA structures, from single strands to quadruplexes, clearly established the quadruplex binding specificity of BOQ1. Fluorescence resonance energy transfer (FRET) T(m) experiments with a doubly labeled oligonucleotide also revealed a strong stabilization of the G4 conformation in the presence of BOQ1 (DeltaT(m) = +28 degrees C). This DeltaT(m) value is one of the highest values measured for a G-quadruplex ligand and is significantly higher than observed for the monomer control compounds (DeltaT(m) = +10-12 degrees C). Gel mobility shift assays indicated that the macrocycle efficiently induces the formation of G-tetraplexes. Strong inhibition of telomerase was observed in the submicromolar range (IC(50) = 0.13 microM). These results indicate that macrocycles represent an exciting new development opportunity for targeting DNA quadruplexes.

摘要

通过多种方法研究了具有两个二苯并菲咯啉(喹吖啶)亚基的大环化合物BOQ1与G-四链体DNA的相互作用。模拟人类端粒重复序列并形成分子内四链体的寡核苷酸5'-A(GGGT(2)A)(3)G(3)被用作一个模型系统。通过生物传感器表面等离子体共振(SPR)方法测得的平衡结合常数表明,大环对四链体构象具有高亲和力(K > 1 x 10(7) M(-)(1)),有两个等效结合位点。BOQ1对DNA双链体的亲和力至少低1个数量级。此外,大环比单体对照化合物(MOQ2)更具选择性,后者无法区分两种DNA结构(K(双链体)≈K(四链体)≈10(6) M(-)(1))。用形成四链体的寡核苷酸进行荧光滴定证实了BOQ1与G4 DNA序列的强结合。用一组从单链到四链体的不同DNA结构进行的竞争透析实验清楚地确定了BOQ1的四链体结合特异性。用双标记寡核苷酸进行的荧光共振能量转移(FRET)T(m)实验也表明,在存在BOQ1的情况下,G4构象得到了强烈稳定(ΔT(m) = +28℃)。这个ΔT(m)值是为G-四链体配体测得的最高值之一,明显高于单体对照化合物所观察到的值(ΔT(m) = +10 - 12℃)。凝胶迁移率变动分析表明,大环能有效诱导G-四链体的形成。在亚微摩尔范围内观察到对端粒酶有强烈抑制作用(IC(50) = 0.13 μM)。这些结果表明,大环化合物代表了靶向DNA四链体的一个令人兴奋的新发展机遇。

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