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首页> 外文期刊>Chemistry: A European journal >Syntheses, photophysical properties, and application of through-bond energy-transfer cassettes for biotechnology
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Syntheses, photophysical properties, and application of through-bond energy-transfer cassettes for biotechnology

机译:合成,光物理性质以及通过键合的能量转移盒在生物技术中的应用

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摘要

We have designed fluorescent "through-bond energy-transfer cassettes" that can harvest energy of a relatively short wavelength (e.g., 490 nm), and emit it at appreciably longer wavelengths without significant loss of intensity. Probes of this type could be particularly useful in biotechnology for multiplexing experiments in which several different outputs are to be observed from a single excitation source. Cassettes 1-4 were designed, prepared, and studied as model systems to achieve this end. They were synthesized through convergent routes that feature coupling of specially prepared fluorescein- and rhodamine-derived fragments. The four cassettes were shown to emit strongly, with highly efficient energy transfer. Their emission maxima cover a broad range of wavelengths (broader than the four dye cassettes currently used for most high-throughput DNA sequencing), and they exhibit faster energy-transfer rates than a similar through-space energy-transfer cassette. Specifically, energy-transfer rates in these cassettes is around 6-7 ps, in contrast to a similar through-space energy-transfer system shown to have a decay time of around 35 ps. Moreover, the cassettes are considerably more stable to photobleaching than fluorescein, even though they each contain fluorescein-derived donors. This was confirmed by bulk fluorescent measurements, and in single-molecule-detection studies. Modification of a commercial automated DNA-sequencing apparatus to detect the emissions of these four energy-transfer cassettes enabled single-color dye-primer sequencing.
机译:我们设计了荧光“通过键的能量传递盒”,其可以收集相对较短波长(例如490 nm)的能量,并以明显更长的波长发射该能量,而不会显着降低强度。这种类型的探针在生物技术中对于多重实验特别有用,在该实验中,要从一个激发源观察到几个不同的输出。为了实现这一目的,设计,准备和研究了1-4盒式磁带作为模型系统。它们是通过收敛途径合成的,该途径具有特殊制备的荧光素和若丹明衍生片段的偶联作用。四个盒带显示出强烈发射,并具有高效的能量传递。它们的发射最大值涵盖了很宽的波长范围(比目前用于大多数高通量DNA测序的四个染料盒更宽),并且它们显示出的能量传递速率要比类似的穿越空间的能量传递盒更快。具体地说,与类似的穿越空间能量传输系统(其衰减时间约为35 ps)相比,这些磁带盒中的能量传输速率约为6-7 ps。而且,即使它们各自含有荧光素衍生的供体,该盒也比荧光素对光漂白稳定得多。大量荧光测量和单分子检测研究证实了这一点。修改商用自动DNA测序设备以检测这四个能量转移盒的发射,从而实现了单色染料引物测序。

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