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单荧光探针用于探索细胞内及亚细胞乳酸动力学。

Single-Fluorophore Indicator to Explore Cellular and Sub-cellular Lactate Dynamics.

机构信息

Centro de Estudios Científicos (CECs), Avenida Arturo Prat 514, Postal Code 5110466 Valdivia, Chile.

Universidad Austral de Chile, Isla Teja s/n, Postal Code 5110566 Valdivia, Chile.

出版信息

ACS Sens. 2022 Nov 25;7(11):3278-3286. doi: 10.1021/acssensors.2c00731. Epub 2022 Oct 28.

Abstract

Lactate is an energy substrate and an intercellular signal, which can be monitored in intact cells with the genetically encoded FRET indicator Laconic. However, the structural complexity, need for sophisticated equipment, and relatively small fluorescent change limit the use of FRET indicators for subcellular targeting and development of high-throughput screening methodologies. Using the bacterial periplasmic binding protein TTHA0766 from , we have now developed a single-fluorophore indicator for lactate, CanlonicSF. This indicator exhibits a maximal fluorescence change of 200% and a of ∼300 μM. The fluorescence is not affected by other monocarboxylates. The lactate indicator was not significantly affected by Ca at the physiological concentrations prevailing in the cytosol, endoplasmic reticulum, and extracellular space, but was affected by Ca in the low micromolar range. Targeting the indicator to the endoplasmic reticulum revealed for the first time sub-cellular lactate dynamics. Its improved lactate-induced fluorescence response permitted the development of a multiwell plate assay to screen for inhibitors of the monocarboxylate transporters MCTs, a pharmaceutical target for cancer and inflammation. The functionality of the indicator in living tissue was demonstrated in the brain of larvae. CanlonicSF is well suited to explore lactate dynamics with sub-cellular resolution in intact systems.

摘要

乳酸是一种能量底物和细胞间信号,可以用遗传编码的 FRET 指示剂 Laconic 在完整细胞中进行监测。然而,结构复杂性、对复杂设备的需求以及相对较小的荧光变化限制了 FRET 指示剂在亚细胞定位和高通量筛选方法发展中的应用。利用来自 的细菌周质结合蛋白 TTHA0766,我们现在开发了一种用于乳酸的单荧光指示剂 CanlonicSF。该指示剂的最大荧光变化为 200%, 为 300 μM 左右。荧光不受其他单羧酸的影响。在细胞质、内质网和细胞外空间中普遍存在的生理浓度的 Ca 对乳酸指示剂没有显著影响,但在低微摩尔范围内的 Ca 会影响其荧光。将指示剂靶向内质网首次揭示了亚细胞乳酸动力学。其改进的乳酸诱导荧光响应允许开发一种多孔板测定法,用于筛选单羧酸转运蛋白 (MCTs) 的抑制剂,MCTs 是癌症和炎症的药物靶点。在 幼虫的脑组织中证明了该指示剂在活体组织中的功能。CanlonicSF 非常适合在完整系统中以亚细胞分辨率探索乳酸动力学。

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