Efficient energy transfer from pyrene to perylene assembled inside DNA duplex.

Hiromu Kashida, Tomohiko Takatsu, Hiroyuki Asanuma
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Abstract

Pyrene (donor) and perylene (acceptor) were assembled in a DNA duplex to increase the apparent Stokes' shift of perylene. Multiple donors were introduced in the vicinity of acceptors via D-threoninol and natural base pairs were inserted between donors and acceptors in order to suppress undesired interactions between them. When two pyrene moieties were located in proximity to one perylene with one base pair inserted between them, efficient FRET occurred within the duplex. Thus, strong emission at 495 nm was observed from perylene when excited at 345 nm where pyrene has its absorption. The apparent Stokes' shift became as large as 115 nm with a high FRET efficiency (Phi>1). However, the introduction of more than two pyrenes did not enhance the fluorescence intensity of perylene, due to the short Förster radius (R(0)) of the donor pyrene.

有效的能量转移从芘到聚在DNA双链内的苝。
芘(供体)和苝(受体)在DNA双链中组装,以增加苝的明显斯托克斯位移。通过d -苏氨酸将多个供体引入受体附近,并在供体和受体之间插入天然碱基对,以抑制它们之间不希望发生的相互作用。当两个芘基团靠近一个苝并在它们之间插入一个碱基对时,有效的FRET发生在双相中。因此,当在345 nm处激发时,在495 nm处观察到苝的强发射,其中芘有吸收。表观Stokes位移达到115 nm,且FRET效率高(Phi>1)。然而,引入两个以上的芘并没有增强苝的荧光强度,这是由于供体芘的Förster半径(R(0))很短。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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