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Toward the Design of a Catalytic Metallodrug: Selective Cleavage of G-Quadruplex Telomeric DNA by an Anticancer Copper–Acridine–ATCUN Complex

机译:催化金属药物的设计:通过抗癌铜-cr啶-ATCUN复合物选择性切割G-四链体端粒DNA

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摘要

Telomeric DNA represents a novel target for the development of anticancer drugs. By application of a catalytic metallodrug strategy, a copper–acridine–ATCUN complex (CuGGHK-Acr) has been designed that targets G-quadruplex telomeric DNA. Both fluorescence solution assays and gel sequencing demonstrate the CuGGHK-Acr catalyst to selectively bind and cleave the G-quadruplex telomere sequence. The cleavage pathway has been mapped by matrix assisted laser desorption ionization time-of-flight mass spectrometry (MALDI-TOF MS) experiments. CuGGHK-Acr promotes significant inhibition of cancer cell proliferation and shortening of telomere length. Both senescence and apoptosis are induced in the breast cancer cell line MCF7.
机译:端粒DNA代表了开发抗癌药物的新靶标。通过应用催化金属药物策略,设计了靶向G-四链体端粒DNA的铜-ac啶-ATCUN复合物(CuGGHK-Acr)。荧光溶液分析和凝胶测序均证明CuGGHK-Acr催化剂可选择性结合并切割G-四链体端粒序列。裂解路径已通过基质辅助激光解吸电离飞行时间质谱(MALDI-TOF MS)实验进行了测绘。 CuGGHK-Acr显着促进癌细胞增殖的抑制和端粒长度的缩短。在乳腺癌细胞系MCF7中诱导衰老和凋亡。

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