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A Fluorescent Indicator for Imaging Lysosomal Zinc(II) with Förster Resonance Energy Transfer (FRET)-Enhanced Photostability and a Narrow Band of Emission

机译:荧光指示剂用于溶酶体锌(II)的成像具有福斯特共振能量转移(FRET)-增强的光稳定性和窄发射带

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摘要

We demonstrate a strategy to transfer the zinc(II) sensitivity of a fluoroionophore with low photostability and a broad emission band to a bright and photostable fluorophore with a narrow emission band. The two fluorophores are covalently connected to afford an intramolecular Förster resonance energy transfer (FRET) conjugate. The FRET donor in the conjugate is a zinc(II)-sensitive arylvinylbipyridyl fluoroionophore, the absorption and emission of which undergo bathochromic shifts upon zinc(II) coordination. When the FRET donor is excited, efficient intramolecular energy transfer occurs to result in the emission of the acceptor boron dipyrromethene (4,4-difluoro-4-bora-3a,4a-diaza-s-indacene or BODIPY) as a function of zinc(II) concentration. The broad emission band of the donor/zinc(II) complex is transformed into the strong, narrow emission band of the BODIPY acceptor in the FRET conjugates, which can be captured within the narrow emission window that is preferred for multicolor imaging experiments. In addition to competing with other nonradiative decay processes of the FRET donor, the rapid intramolecular FRET of the excited FRET-conjugate molecule protects the donor fluorophore from photobleaching, thus enhancing the photostability of the indicator. FRET conjugates >3 and >4 contain aliphatic amino groups, which selectively target lysosomes in mammalian cells. This subcellular localization preference was verified by using confocal fluorescence microscopy, which also shows the zinc(II)-enhanced emission of >3 and >4 in lysosomes. It was further shown using two-color structured illumination microscopy (SIM), which is capable of extending the lateral resolution over the Abbe diffraction limit by a factor of two, that the morpholino-functionalized compound >4 localizes in the interior of lysosomes, rather than anchoring on the lysosomal membranes, of live HeLa cells.
机译:我们展示了一种将低光稳定性和宽发射带的氟离子载体的锌(II)敏感性转移到窄发射带的明亮而光稳定的荧光团的策略。将两个荧光团共价连接以提供分子内福斯特共振能量转移(FRET)共轭物。缀合物中的FRET供体是锌(II)敏感的芳基乙烯基联吡啶基氟离子载体,其吸收和发射在锌(II)配位时发生红移。当FRET供体被激发时,分子内的有效能量转移发生,导致受主硼二吡咯亚甲基(4,4-二氟-4-硼3a,4a-二氮杂-s-茚并四烯或BODIPY)的发射与锌有关(二)集中。供体/锌(II)配合物的宽发射带被转换为FRET缀合物中BODIPY受体的强而窄的发射带,可以在狭窄的发射窗口内捕获,这对于多色成像实验是优选的。除了与FRET供体的其他非辐射衰变过程竞争之外,受激FRET共轭分子的快速分子内FRET还可以保护供体荧光团免于光致漂白,从而增强指示剂的光稳定性。 FRET结合物> 3 和> 4 含有脂族氨基,可选择性靶向哺乳动物细胞中的溶酶体。通过共聚焦荧光显微镜验证了这种亚细胞定位的偏好,它还显示了溶酶体中> 3 和> 4 的锌(II)增强发射。使用二色结构照明显微镜(SIM)进一步显示,该结构能够将阿贝衍射极限上的横向分辨率扩大两倍,即吗啉代官能化化合物> 4 位于活HeLa细胞的溶酶体内部,而不是锚定在溶酶体膜上。

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