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膦荧光素:合成、光谱学及应用。

Phosphonofluoresceins: Synthesis, Spectroscopy, and Applications.

出版信息

J Am Chem Soc. 2021 Apr 28;143(16):6194-6201. doi: 10.1021/jacs.1c01139. Epub 2021 Apr 2.

Abstract

Xanthene fluorophores, like fluorescein, have been versatile molecules across diverse fields of chemistry and life sciences. Despite the ubiquity of 3-carboxy and 3-sulfonofluorescein for the last 150 years, to date, no reports of 3-phosphonofluorescein exist. Here, we report the synthesis, spectroscopic characterization, and applications of 3-phosphonofluoresceins. The absorption and emission of 3-phosphonofluoresceins remain relatively unaltered from the parent 3-carboxyfluorescein. 3-Phosphonofluoresceins show enhanced water solubility compared to 3-carboxyfluorescein and persist in an open, visible light-absorbing state even at low pH and in low dielectric media while 3-carboxyfluoresceins tend to lactonize. In contrast, the spirocyclization tendency of 3-phosphonofluoresceins can be modulated by esterification of the phosphonic acid. The bis-acetoxymethyl ester of 3-phosphonofluorescein readily enters living cells, showing excellent accumulation (>6x) and retention (>11x), resulting in a nearly 70-fold improvement in cellular brightness compared to 3-carboxyfluorescein. In a complementary fashion, the free acid form of 3-phosphonofluorescein does not cross cellular membranes, making it ideally suited for incorporation into a voltage-sensing scaffold. We develop a new synthetic route to functionalized 3-phosphonofluoresceins to enable the synthesis of phosphono-voltage sensitive fluorophores, or phosVF2.1.Cl. Phosphono-VF2.1.Cl shows excellent membrane localization, cellular brightness, and voltage sensitivity (26% ΔF/F per 100 mV), rivaling that of sulfono-based VF dyes. In summary, we develop the first synthesis of 3-phosphonofluoresceins, characterize the spectroscopic properties of this new class of xanthene dyes, and utilize these insights to show the utility of 3-phosphonofluoresceins in intracellular imaging and membrane potential sensing.

摘要

香豆素荧光团,如荧光素,在化学和生命科学的各个领域都是多功能的分子。尽管羧基和磺酸基荧光素在过去的 150 年中无处不在,但迄今为止,还没有关于 3-膦酸荧光素的报道。在这里,我们报告了 3-膦酸荧光素的合成、光谱特性和应用。3-膦酸荧光素的吸收和发射与母体 3-羧基荧光素相比相对不变。与 3-羧基荧光素相比,3-膦酸荧光素的水溶性增强,即使在低 pH 值和低介电介质中,也能保持开放的可见光吸收状态,而 3-羧基荧光素则倾向于内酯化。相比之下,3-膦酸荧光素的螺环化趋势可以通过膦酸的酯化来调节。3-膦酸荧光素的双乙酰氧甲酯很容易进入活细胞,表现出优异的积累(>6 倍)和保留(>11 倍),与 3-羧基荧光素相比,细胞亮度提高了近 70 倍。以互补的方式,3-膦酸荧光素的游离酸形式不能穿过细胞膜,使其非常适合掺入电压感应支架。我们开发了一种新的合成路线来合成功能化的 3-膦酸荧光素,以合成磷酰基-电压敏感荧光团,或 phosVF2.1.Cl。PhosVF2.1.Cl 表现出优异的膜定位、细胞亮度和电压敏感性(每 100 mV 增加 26%ΔF/F),与基于磺酸的 VF 染料相当。总之,我们开发了 3-膦酸荧光素的首次合成方法,对这种新型香豆素染料的光谱特性进行了表征,并利用这些见解展示了 3-膦酸荧光素在细胞内成像和膜电位传感中的应用。

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