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DFHBI 与 RNA 适体 Baby Spinach 的光物理。

Photophysics of DFHBI bound to RNA aptamer Baby Spinach.

机构信息

School of Physical and Mathematical Sciences, Nanyang Technological University, Singapore 637371, Singapore.

Institute of Materials Science, Vietnam Academy of Science and Technology, Hanoi 100000, Vietnam.

出版信息

Sci Rep. 2021 Apr 1;11(1):7356. doi: 10.1038/s41598-021-85091-y.

Abstract

The discovery of the GFP-type dye DFHBI that becomes fluorescent upon binding to an RNA aptamer, termed Spinach, led to the development of a variety of fluorogenic RNA systems that enable genetic encoding of living cells. In view of increasing interest in small RNA aptamers and the scarcity of their photophysical characterisation, this paper is a model study on Baby Spinach, a truncated Spinach aptamer with half its sequence. Fluorescence and fluorescence excitation spectra of DFHBI complexes of Spinach and Baby Spinach are known to be similar. Surprisingly, a significant divergence between absorption and fluorescence excitation spectra of the DFHBI/RNA complex was observed on conditions of saturation at large excess of RNA over DFHBI. Since absorption spectra were not reported for any Spinach-type aptamer, this effect is new. Quantitative modelling of the absorption spectrum based on competing dark and fluorescent binding sites could explain it. However, following reasoning of fluorescence lifetimes of bound DFHBI, femtosecond-fluorescence lifetime profiles would be more supportive of the notion that the abnormal absorption spectrum is largely caused by trans-isomers formed  within the cis-bound DFHBI/RNA complex. Independent of the origin, the unexpected discrepancy between absorption and fluorescence excitation spectra allows for easily accessed screening and insight into the efficiency of a fluorogenic dye/RNA system.

摘要

DFHBI 型染料与 RNA 适体结合后会发出荧光,这种染料被称为 Spinach,它的发现促使了各种荧光 RNA 系统的发展,使活细胞的基因编码成为可能。鉴于人们对小 RNA 适体的兴趣日益增加,而对其光物理特性的研究却很少,因此本文对 Baby Spinach(一种序列减半的截短型 Spinach 适体)进行了模型研究。众所周知,DFHBI 与 Spinach 和 Baby Spinach 的复合物的荧光和荧光激发光谱相似。令人惊讶的是,在 RNA 过量的情况下,DFHBI/RNA 复合物的吸收光谱和荧光激发光谱之间存在明显的差异。由于没有报道过任何 Spinach 型适体的吸收光谱,因此这种现象是新的。基于竞争的暗态和荧光结合位点的吸收光谱定量建模可以解释这种现象。然而,根据结合的 DFHBI 的荧光寿命推理,飞秒荧光寿命分布更支持这样的观点,即异常吸收光谱主要是由顺式结合的 DFHBI/RNA 复合物内形成的反式异构体引起的。无论其来源如何,吸收光谱和荧光激发光谱之间出人意料的差异使得易于进行荧光染料/RNA 系统的筛选和效率研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3e21/8016939/3cfaf5d72305/41598_2021_85091_Fig1_HTML.jpg

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