G‐Quadruplex‐Based Photooxidase Driven by Visible Light

G‐Quadruplex‐Based Photooxidase Driven by Visible Light
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DOI:
10.1002/cctc.201901481
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发表时间:
2020-01
期刊:
影响因子:
4.5
通讯作者:
Longlong Gao;Xingyu Tong;Ting Ye;Heng Gao;Qingqing Zhang;Chenxiao Yan;Yali Yu;Yifan Fei;Xiaoshun Zhou;Yong Shao
Longlong Gao;Xingyu Tong;Ting Ye;Heng Gao;Qingqing Zhang;Chenxiao Yan;Yali Yu;Yifan Fei;Xiaoshun Zhou;Yong Shao
中科院分区:
化学3区
文献类型:
--
作者:
Longlong Gao;Xingyu Tong;Ting Ye;Heng Gao;Qingqing Zhang;Chenxiao Yan;Yali Yu;Yifan Fei;Xiaoshun Zhou;Yong Shao

文献摘要

相似文献

The G‐quadruplex (G4)/hemin entity has been widely used as a peroxidase‐mimic DNAzyme to catalyze the substrate oxidation with exogenous and concentrated H2O2 as oxidant for developing various devices. Herein, a G4‐based oxidase‐mimic DNAzyme that can be driven by visible light was developed. The oxidant is in situ produced by light irradiation. As a natural photosensitizer, Hypericin (Hyp) alone in solution is inactive because of aggregation. However, the binding with G4 triggers the fluorescence emission and activates Hyp to produce singlet oxygen (1O2) by energy transfer to the dissolved oxygen. Therefore, the G4/Hyp entity can serve as a photooxidase via the 1O2 pathway to catalyze the substrate oxidation. Since the G4‐bound Hyp can be excited by almost the whole range of visible light, the photooxidase should cover a wide range of photocatalytic applications. Similar to the peroxidase‐mimic DNAzyme, the G4 sequence can regulate the photooxidase activity and metal ions can serve as efficient cofactors to activate the photooxidase capacity for an inactive G4 structure. This work provides an alternative to build a versatile G4‐based photooxidase with straightforward tunability of its activity.