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利用基于 M13 噬菌体的荧光能量共振转移系统上的 TNT 抑制剂进行分子间距离测量。

Intermolecular distance measurement with TNT suppressor on the M13 bacteriophage-based Förster resonance energy transfer system.

机构信息

School of Electrical Engineering and Computer Science, Gwangju Institute of Science and Technology, Gwangju, 61005, Republic of Korea.

Department of Cogno-Mechatronics Engineering, Pusan National University, Busan, 46241, Republic of Korea.

出版信息

Sci Rep. 2019 Jan 24;9(1):496. doi: 10.1038/s41598-018-36990-0.

Abstract

An M13 bacteriophage-based Förster resonance energy transfer (FRET) system is developed to estimate intermolecular distance at the nanoscale using a complex of CdSSe/ZnS nanocrystal quantum dots, genetically engineered M13 bacteriophages labeled with fluorescein isothiocyanate and trinitrotoluene (TNT) as an inhibitor. In the absence of trinitrotoluene, it is observed that a significant spectral shift from blue to green occur, which represents efficient energy transfer through dipole-dipole coupling between donor and acceptor, or FRET-on mode. On the other hand, in the presence of trinitrotoluene, the energy transfer is suppressed, since the donor-to-acceptor intermolecular distance is detuned by the specific capturing of TNT by the M13 bacteriophage, denoted as FRET-off mode. These noble features are confirmed by changes in the fluorescence intensity and the fluorescence decay curve. TNT addition to our system results in reducing the total energy transfer efficiency considerably from 16.1% to 7.6% compared to that in the non-TNT condition, while the exciton decay rate is significantly enhanced. In particular, we confirm that the energy transfer efficiency satisfies the original intermolecular distance dependence of FRET. The relative donor-to-acceptor distance is changed from 70.03 Å to 80.61 Å by inclusion of TNT.

摘要

开发了一种基于 M13 噬菌体的Förster 共振能量转移(FRET)系统,该系统使用 CdSSe/ZnS 纳米晶体量子点复合物、用荧光素异硫氰酸酯和三硝基甲苯(TNT)标记的遗传工程化 M13 噬菌体作为抑制剂,用于估计纳米尺度上的分子间距离。在没有三硝基甲苯的情况下,观察到从蓝色到绿色的显著光谱位移,这代表了供体和受体之间通过偶极-偶极耦合的有效能量转移,或者是 FRET-on 模式。另一方面,在存在三硝基甲苯的情况下,能量转移受到抑制,因为供体-受体分子间距离通过 M13 噬菌体对 TNT 的特异性捕获而失谐,标记为 FRET-off 模式。这些优异的特性通过荧光强度和荧光衰减曲线的变化得到证实。与非 TNT 条件相比,TNT 加入我们的系统会导致总能量转移效率从 16.1%显著降低到 7.6%,而激子衰减速率显著增强。特别是,我们确认能量转移效率满足 FRET 的原始分子间距离依赖性。通过包含 TNT,供体-受体的相对距离从 70.03 Å 变为 80.61 Å。

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