Graduate School of Life Sciences, Tohoku University, 2-1-1 Katahira, Aoba-ku, Sendai, Miyagi 980-8577, Japan.
Institute of Multidisciplinary Research for Advanced Materials, Tohoku University, 2-1-1 Katahira, Aoba-ku, Sendai, Miyagi 980-8577, Japan.
ACS Sens. 2022 Mar 25;7(3):748-757. doi: 10.1021/acssensors.1c02153. Epub 2022 Mar 3.
Although many Zn fluorescent probes have been developed, there remains a lack of consensus on the labile Zn concentrations ([Zn]) in several cellular compartments, as the fluorescence properties and zinc affinity of the fluorescent probes are greatly affected by the pH and redox environments specific to organelles. In this study, we developed two turn-on-type Zn fluorescent probes, namely, ZnDA-2H and ZnDA-3H, with low pH sensitivity and suitable affinity ( = 5.0 and 0.16 nM) for detecting physiological labile Zn in various cellular compartments, such as the cytosol, nucleus, ER, and mitochondria. Due to their sufficient membrane permeability, both probes were precisely localized to the target organelles in HeLa cells using HaloTag labeling technology. Using an standard quantification method, we identified the [Zn] in the tested organelles, resulting in the subcellular [Zn] distribution as [Zn] < [Zn] < [Zn] ∼ [Zn].
虽然已经开发出许多 Zn 荧光探针,但在几个细胞区室的不稳定 Zn 浓度 ([Zn]) 方面仍然缺乏共识,因为荧光探针的荧光性质和锌亲和力受到细胞器特有的 pH 和氧化还原环境的极大影响。在这项研究中,我们开发了两种基于开启型的 Zn 荧光探针,即 ZnDA-2H 和 ZnDA-3H,它们具有低 pH 敏感性和适合的亲和力(=5.0 和 0.16 nM),可用于检测各种细胞区室(如细胞质、核、内质网和线粒体)中的生理不稳定 Zn。由于它们具有足够的膜通透性,因此使用 HaloTag 标记技术,这两种探针都可以精确地定位于 HeLa 细胞中的目标细胞器。使用标准的定量方法,我们确定了测试细胞器中的 [Zn],得到了细胞内 [Zn] 的分布情况,结果为 [Zn] < [Zn] < [Zn] ∼ [Zn]。