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Brightness Enhanced DNA FIT-Probes for Wash-Free RNA Imaging in Tissue

机译:用于组织中免洗RNA成像的亮度增强型DNA FIT探针

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摘要

Fluorogenic oligonudeotides enable RNA imaging in cells and tissues. A high responsiveness of fluorescence is required when unbound probes cannot be washed away. Furthermore, emission should be bright in order to enable detection against autofluorescent background. The development of fluorescence-quenched hybridization probes has led to remarkable improvement of fluorescence responsiveness. Yet, comparably little attention has been paid to the brightness of smart probes. We describe hybridization probes that combine responsiveness with a high brightness of the measured signal. The method relies upon quencher-free DNA forced intercalation (FIT)-probes, in which two (or more) intercalator dyes of the thiazole orange (TO) family serve as nudeobase surrogates. Initial experiments on multi-TO-labeled probes led to improvements of responsiveness, but self-quenching limited their brightness. To enhance both brightness and responsiveness the highly responsive TO nudeoside was combined with the highly emissive oxazolopyridine analogue JO. Single-stranded TO/JO FIT-probes are dark. In the probe-target duplex, quenching caused by torsional twisting and dye-dye contact is prevented. The TO nudeoside appears to serve as a light collector that increases the extinction coefficient and transfers excitation energy to the JO emitter. This leads to very bright JO emission upon hybridization (F/F_0 = 23, brightness = 43 mL mol~(-1) cm~(-1) at λ_(ex)= 516 nm). TO/JO FIT-probes allowed the direct fluorescence microscopic imaging of oskar mRNA within a complex tissue. Of note, RNA imaging was feasible under wide-field excitation conditions. The described protocol enables rapid RNA imaging in tissue without the need for cutting-edge equipment, time-consuming washing, or signal amplification.
机译:荧光寡核苷酸使细胞和组织中的RNA成像成为可能。当未结合的探针无法洗去时,需要高荧光响应性。此外,发射应该是明亮的以便能够针对自发荧光背景进行检测。荧光猝灭杂交探针的发展已导致荧光响应性的显着改善。然而,相对而言,很少有人关注智能探头的亮度。我们描述了将响应度与测量信号的高亮度结合在一起的杂交探针。该方法依赖于无猝灭剂的DNA强制嵌入(FIT)探针,其中噻唑橙(TO)家族的两种(或多种)嵌入剂用作裸碱基替代物。在多TO标记探针上进行的最初实验导致了响应度的提高,但自猝灭限制了它们的亮度。为了增强亮度和响应性,将对裸子苷的高响应性与高发射率的恶唑烷吡啶类似物JO结合。单链TO / JO FIT探针较暗。在探针-靶标双链体中,防止了由于扭转扭曲和染料接触而引起的淬灭。 TO核苷似乎起着增加消光系数并将激发能转移到JO发射器的光收集器的作用。这导致杂交时非常亮的JO发射(F / F_0 = 23,在λ_(ex)= 516 nm时亮度= 43 mL mol〜(-1)cm〜(-1))。 TO / JO FIT探针可对复杂组织内的oskar mRNA进行直接荧光显微镜成像。值得注意的是,RNA成像在大范围激发条件下是可行的。所描述的方案可以在组织中进行快速RNA成像,而无需尖端设备,费时的清洗或信号放大。

著录项

  • 来源
    《Journal of the American Chemical Society》 |2013年第50期|19025-19032|共8页
  • 作者单位

    Institut fur Chemie der Humboldt-Universitaet zu Berlin, 12489 Berlin, Germany;

    European Molecular Biology Laboratory, 69117 Heidelberg, Germany;

    European Molecular Biology Laboratory, 69117 Heidelberg, Germany;

    Institut fur Chemie der Humboldt-Universitaet zu Berlin, 12489 Berlin, Germany;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
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  • 入库时间 2022-08-18 03:12:54

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