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通过自消旋分子内环化用于活细胞和组织中组蛋白去乙酰化酶成像的可活化荧光探针。

Activatable Fluorescence Probe via Self-Immolative Intramolecular Cyclization for Histone Deacetylase Imaging in Live Cells and Tissues.

机构信息

Institute of Chemical Biology and Nanomedicine, State Key Laboratory of Chemo/Bio-Sensing and Chemometrics, College of Chemistry and Chemical Engineering , Hunan University , Changsha , 410082 , P. R. China.

出版信息

Anal Chem. 2018 May 1;90(9):5534-5539. doi: 10.1021/acs.analchem.8b00709. Epub 2018 Apr 12.

Abstract

Histone deacetylases (HDACs) play essential roles in transcription regulation and are valuable theranostic targets. However, there are no activatable fluorescent probes for imaging of HDAC activity in live cells. Here, we develop for the first time a novel activatable two-photon fluorescence probe that enables in situ imaging of HDAC activity in living cells and tissues. The probe is designed by conjugating an acetyl-lysine mimic substrate to a masked aldehyde-containing fluorophore via a cyanoester linker. Upon deacetylation by HDAC, the probe undergoes a rapid self-immolative intramolecular cyclization reaction, producing a cyanohydrin intermediate that is spontaneously rapidly decomposed into the highly fluorescent aldehyde-containing two-photon fluorophore. The probe is shown to exhibit high sensitivity, high specificity, and fast response for HDAC detection in vitro. Imaging studies reveal that the probe is able to directly visualize and monitor HDAC activity in living cells. Moreover, the probe is demonstrated to have the capability of two-photon imaging of HDAC activity in deep tissue slices up to 130 μm. This activatable fluorescent probe affords a useful tool for evaluating HDAC activity and screening HDAC-targeting drugs in both live cell and tissue assays.

摘要

组蛋白去乙酰化酶(HDACs)在转录调控中发挥着重要作用,是有价值的治疗靶点。然而,目前还没有可激活的荧光探针可用于活细胞中 HDAC 活性的成像。在这里,我们首次开发了一种新型的可激活双光子荧光探针,可实现在活细胞和组织中对 HDAC 活性的原位成像。该探针通过氰基酯键将乙酰化赖氨酸模拟物底物连接到掩蔽的含醛荧光团上而设计得到。在被 HDAC 去乙酰化后,探针经历快速的自消除分子内环化反应,生成氰醇中间体,该中间体可自发迅速分解为高荧光含醛双光子荧光团。该探针在体外对 HDAC 的检测表现出高灵敏度、高特异性和快速响应。成像研究表明,该探针能够直接可视化和监测活细胞中的 HDAC 活性。此外,该探针还被证明具有在深度组织切片中进行双光子成像 HDAC 活性的能力,深度可达 130 μm。这种可激活的荧光探针为在活细胞和组织测定中评估 HDAC 活性和筛选 HDAC 靶向药物提供了一种有用的工具。

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