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Synthesis and Characterization of Iridium(III) Cyclometalated Complexes with Oligonucleotides: Insights into Redox Reactions with DNA

机译:寡核苷酸与铱(III)环金属化配合物的合成和表征:对DNA氧化还原反应的认识。

摘要

Heteroleptic cyclometalated complexes of Ir(III) containing the dipyridophenazine ligand are synthesized through the direct introduction of a functionalized dipyridophenazine ligand onto a bis(dichloro)-bridged Ir(III) precusor and characterized by ^1H NMR, mass spectrometry, as well as spectroscopic and electrochemical properties. The excited state of the Ir(III) complexes have sufficient driving force to oxidize purines and to reduce pyrimidine nucleobases. Luminescence and EPR measurements of the Ir(III) complex with an unmodified dppz bound to DNA show the formation of a guanine radical upon irradiation, resulting from an oxidative photoinduced electron-transfer process. Evidence is also obtained indirectly for reductive photoinduced electron transfer from the excited complex to the thymine base in DNA. We have also utilized cyclopropylamine-substituted nucleosides as ultrafast kinetic traps to report transient charge occupancy in oligonucleotides when DNA is irradiated in the presence of noncovalently bound complexes. These experiments establish that the derivatized Ir(III) complexes, with photoactivation, can trigger the oxidation of guanine and the reduction of cytosine.
机译:通过直接将官能化的二吡啶并吩嗪配体引入到双(二氯)桥联的Ir(III)前驱体上来合成含二吡啶并吩嗪配体的Ir(III)的多金属环化配合物,并通过^ 1H NMR,质谱和光谱进行表征和电化学性能。 Ir(III)配合物的激发态具有足够的驱动力来氧化嘌呤并还原嘧啶核苷碱基。 Ir(III)配合物(未修饰的dppz与DNA结合)的发光和EPR测量表明,辐照后形成了鸟嘌呤自由基,这是由氧化的光诱导电子转移过程引起的。还间接获得了还原光诱导的电子从激发复合物到DNA中胸腺嘧啶碱基转移的证据。我们还利用环丙胺取代的核苷作为超快速动力学陷阱,以报告在非共价结合的复合物存在下照射DNA时寡核苷酸中的瞬时电荷占用。这些实验确定了具有光活化作用的衍生化的Ir(III)配合物可以触发鸟嘌呤的氧化和胞嘧啶的减少。

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