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Streptavidin interfacing as a general strategy to localize fluorescent membrane tension probes in cells

机译:链霉亲和素接口作为定位细胞中荧光膜张力探针的一般策略

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摘要

To image the mechanical properties of biological membranes, twisted push–pull mechanophores that respond to membrane tension by planarization in the ground state have been introduced recently. For their application in biological systems, these so-called fluorescent flippers will have to be localized to specific environments of cellular membranes. In this report, we explore streptavidin as a versatile connector between biotinylated flipper probes and biotinylated targets. Fluorescence spectroscopy and microscopy with LUVs and GUVs reveal the specific conditions needed for desthiobiotin-loaded streptavidin to deliver biotinylated flippers selectively to biotinylated membranes. Selectivity for biotinylated plasma membranes is also observed in HeLa cells, confirming the compatibility of this strategy with biological systems. Streptavidin interfacing does not affect the mechanosensitivity of the flipper probes, red shift in the excitation maximum and fluorescence lifetime increase with membrane order and tension, as demonstrated, inter alia, using FLIM.
机译:为了对生物膜的机械性能进行成像,最近已经引入了扭曲的推拉机械力,该力通过基态的平面化来响应膜的张力。对于它们在生物系统中的应用,这些所谓的荧光鳍状肢将必须局限在细胞膜的特定环境中。在本报告中,我们探索链霉亲和素作为生物素化的鳍状探针和生物素化靶标之间的多功能连接器。用LUV和GUV进行的荧光光谱和显微镜检查揭示了装载去硫生物素的链霉亲和素将生物素化的鳍状肢选择性地递送至生物素化膜所需的特定条件。在HeLa细胞中也观察到了对生物素化质膜的选择性,证实了该策略与生物系统的兼容性。链霉抗生物素蛋白的界面不影响鳍状探针的机械敏感性,最大激发红移和荧光寿命随膜顺序和张力的增加而增加,如使用FLIM所证明的。

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