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Enhanced Förster Resonance Energy Transfer on Single Metal Particle. 2. Dependence on Donor–Acceptor Separation Distance Particle Size and Distance from Metal Surface

机译:单一金属粒子上增强的Förster共振能量传递。 2.取决于施主-受主的分离距离颗粒大小以及与金属表面的距离

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摘要

We studied the effect of metal particles on Förster resonance energy transfer (FRET) between nearby donor–acceptor pairs. The studies included the effect of donor–acceptor distance, silver particle size, and distance from the metal surface. The metal particles were synthesized with average diameters of 15, 40, and 80 nm, respectively. A Cy5-labeled oligonucleotide was chemically bound to a single silver particle with a distance of 2 or 10 nm from the surface of metal core. A Cy5.5-labeled complementary oligonucleotide was bound to the particle-conjugated oligonucleotide by hybridization. The spacer length between donor–acceptor was adjusted by the number of base pairs. FRET between the donor–acceptor pair was investigated by dual-channel single-molecule fluorescence detection. Both the emission intensities and lifetimes indicated that FRET was enhanced efficiently by the metal particles. The results showed an increase of apparent energy transfer distance with the size of silver particle and distance from the metal core. Simulations by finite-difference time-domain (FDTD) calculations were used to compare with the experimental results. The local fields at the location of the donor–acceptor pair appeared to correlate with the FRET efficiency. These results will aid in the design of metal particles for using FRET to determine biomolecule proximity at distances beyond the usual Förster distance.
机译:我们研究了金属粒子对附近施主-受主对之间的Förster共振能量转移(FRET)的影响。研究包括供体-受体距离,银颗粒大小以及与金属表面的距离的影响。合成的金属颗粒的平均直径分别为15、40和80 nm。将Cy5标记的寡核苷酸化学键合到与金属芯表面相距2或10 nm的单个银颗粒上。通过杂交将Cy5.5标记的互补寡核苷酸结合到颗粒缀合的寡核苷酸。供体-受体之间的间隔区长度通过碱基对的数量进行调节。通过双通道单分子荧光检测研究了供体-受体对之间的FRET。发射强度和寿命均表明,FRET被金属颗粒有效地增强了。结果表明,表观能量转移距离随银颗粒的大小和与金属核的距离而增加。通过有限差分时域(FDTD)计算进行的仿真与实验结果进行了比较。供体-受体对位置上的局部磁场似乎与FRET效率相关。这些结果将有助于设计金属粒子,以便使用FRET确定比通常的Förster距离更远的距离处的生物分子接近度。

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