费斯特共振能量转移
化学
单分子微动
寡核苷酸
DNA
单分子实验
锇
分子
荧光
核酸
分子动力学
生物物理学
计算化学
生物化学
生物
钌
物理
有机化学
量子力学
催化作用
作者
Raul Berrocal‐Martin,Carlos Sanchez‐Cano,Cookson K. C. Chiu,Russell J. Needham,Peter J. Sadler,Steven W. Magennis
标识
DOI:10.1002/chem.202000458
摘要
The metallation of nucleic acids is key to wide-ranging applications, from anticancer medicine to nanomaterials, yet there is a lack of understanding of the molecular-level effects of metallation. Here, we apply single-molecule fluorescence methods to study the reaction of an organo-osmium anticancer complex and DNA. Individual metallated DNA hairpins are characterised using Förster resonance energy transfer (FRET). Although ensemble measurements suggest a simple two-state system, single-molecule experiments reveal an underlying heterogeneity in the oligonucleotide dynamics, attributable to different degrees of metallation of the GC-rich hairpin stem. Metallated hairpins display fast two-state transitions with a two-fold increase in the opening rate to ≈2 s-1 , relative to the unmodified hairpin, and relatively static conformations with long-lived open (and closed) states of 5 to ≥50 s. These studies show that a single-molecule approach can provide new insight into metallation-induced changes in DNA structure and dynamics.
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