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用于端粒结合和端粒酶抑制的卟啉衍生物

Porphyrin derivatives for telomere binding and telomerase inhibition.

作者信息

Dixon Isabelle M, Lopez Frédéric, Estève Jean-Pierre, Tejera Agueda M, Blasco María A, Pratviel Geneviève, Meunier Bernard

机构信息

Laboratoire de Chimie de Coordination, CNRS UPR 8241, 205 route de Narbonne, 31077 Toulouse Cedex 4, France.

出版信息

Chembiochem. 2005 Jan;6(1):123-32. doi: 10.1002/cbic.200400113.

Abstract

The capacity of G-quadruplex ligands to stabilize four-stranded DNA makes them able to inhibit telomerase, which is involved in tumour cell proliferation. A series of cationic metalloporphyrin derivatives was prepared by making variations on a meso-tetrakis(4-N-methyl-pyridiniumyl)porphyrin skeleton (TMPyP). The DNA binding properties of nickel(II) and manganese(III) porphyrins were studied by surface plasmon resonance, and the capacity of the nickel porphyrins to inhibit telomerase was tested in a TRAP assay. The nature of the metal influences the kinetics (the process is faster for Ni than for Mn) and the mode of interaction (stacking or external binding). The chemical alterations did not lead to increased telomerase inhibition. The best selectivity for G-quadruplex DNA was observed for Mn-TMPyP, which has a tenfold preference for quadruplex over duplex.

摘要

G-四链体配体稳定四链DNA的能力使其能够抑制端粒酶,而端粒酶与肿瘤细胞增殖有关。通过对中位四(4-N-甲基吡啶基)卟啉骨架(TMPyP)进行修饰,制备了一系列阳离子金属卟啉衍生物。通过表面等离子体共振研究了镍(II)和锰(III)卟啉的DNA结合特性,并在端粒重复扩增法(TRAP)试验中测试了镍卟啉抑制端粒酶的能力。金属的性质影响动力学(镍的过程比锰快)和相互作用模式(堆积或外部结合)。化学修饰并未导致端粒酶抑制作用增强。对于Mn-TMPyP,观察到其对G-四链体DNA具有最佳选择性,其对四链体的偏好是双链体的十倍。

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