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A Highly Fluorescent Nucleobase Molecular Rotor

机译:高度荧光核碱基分子转子

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摘要

Fluorescent base analogs (FBAs) are powerful probes of nucleic acids' structures and dynamics. However, previously reported FBAs exhibit relatively low brightness and therefore limited sensitivity of detection. Here we report the hitherto brightest FBA that has ideal molecular rotor properties for detecting local dynamic motions associated with base pair mismatches. The new trans-stilbene annulated uracil derivative "~(ts)T" exhibits bright fluorescence emissions in various solvents (ε × Φ = 3400-29 700 cm~(-1) M~(-1)) and is highly sensitive to mechanical motions in duplex DNA (ε × Φ = 150-4250 cm~(-1) M~(-1)). ~(ts)T is thereby a "smart" thymidine analog, exhibiting a 28-fold brighter fluorescence intensity when base paired with A as compared to T or C. Time-correlated single photon counting revealed that the fluorescence lifetime of ~(ts)T (τ = 4- 11 ns) was shorter than its anisotropy decay in well-matched duplex DNA (θ = 20 ns), yet longer than the dynamic motions of base pair mismatches (0.1-10 ns). These properties enable unprecedented sensitivity in detecting local dynamics of nucleic acids.
机译:荧光基础类似物(FBA)是核酸结构和动力学的强大探针。然而,先前报道的FBA表现出相对较低的亮度并因此具有有限的检测灵敏度。在这里,我们报告了迄今为止最亮的FBA,具有理想的分子转子性能,用于检测与基对不匹配相关的局部动态运动。新的反式甾苯乙烯包封尿嘧啶衍生物“〜(TS)T”在各种溶剂中表现出明亮的荧光发射(ε×φ= 3400-29 700cm〜(-1)m〜(-1)),对机械非常敏感双相DNA中的运动(ε×φ= 150-4250cm〜(-1)m〜(-1))。由此〜(TS)T由此是“智能”胸苷类似物,当与T或C相比,当碱配对时,表现出28倍的亮荧光强度。时间相关的单光子计数显示〜(TS)的荧光寿命T(τ= 4-11ns)比其匹配的双相DNA(θ= 20ns)中的各向异性衰减短,但是比碱基对错配的动态运动(0.1-10ns)。这些性质在检测核酸的局部动态方面具有前所未有的敏感性。

著录项

  • 来源
    《Journal of the American Chemical Society》 |2020年第34期|14422-14426|共5页
  • 作者单位

    Department of Chemistry University of Zurich CH-8057 Zurich Switzerland Department of Chemistry McGill University H3A-0B8 Montreal Canada;

    Department of Chemistry University of Zurich CH-8057 Zurich Switzerland Laserinstitut Hochschule Mittweida University of Applied Sciences 09648 Mittweida Germany;

    Department of Chemistry University of Zurich CH-8057 Zurich Switzerland;

    Department of Chemistry University of Zurich CH-8057 Zurich Switzerland Department of Chemistry and Department of Pharmacology and Therapeutics McGill University H3A-0B8 Montreal Canada;

  • 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
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