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一种双启动子系统,可在单细胞分辨率下体内监测 IFN-γ 信号传导。

A Dual Promoter System to Monitor IFN-γ Signaling in vivo at Single-cell Resolution.

机构信息

Laboratory of Bioimaging and Cell Signaling, Research Center for Dynamic Living Systems, Graduate School of Biostudies, Kyoto University.

Medical Oncology, Dana-Farber Cancer Institute, Harvard Medical School.

出版信息

Cell Struct Funct. 2021 Dec 22;46(2):103-111. doi: 10.1247/csf.21052. Epub 2021 Nov 6.

Abstract

IFN-γ secreted from immune cells exerts pleiotropic effects on tumor cells, including induction of immune checkpoint and antigen presentation, growth inhibition, and apoptosis induction. We combined a dual promoter system with an IFN-γ signaling responsive promoter to generate a reporter named the interferon sensing probe (ISP), which quantitates the response to IFN-γ by means of fluorescence and bioluminescence. The integration site effect of the transgene is compensated for by the PGK promoter-driven expression of a fluorescent protein. Among five potential IFN-γ-responsive elements, we found that the interferon γ-activated sequence (GAS) exhibited the best performance. When ISP-GAS was introduced into four cell lines and subjected to IFN-γ stimulation, dose-dependency was observed with an EC ranging from 0.2 to 0.9 ng/mL, indicating that ISP-GAS can be generally used as a sensitive biosensor of IFN-γ response. In a syngeneic transplantation model, the ISP-GAS-expressing cancer cells exhibited bioluminescence and fluorescence signals in an IFN-γ receptor-dependent manner. Thus, ISP-GAS could be used to quantitatively monitor the IFN-γ response both in vitro and in vivo.Key words: in vivo imaging, tumor microenvironment, interferon-gamma, dual promoter system.

摘要

免疫细胞分泌的 IFN-γ 对肿瘤细胞发挥多种作用,包括诱导免疫检查点和抗原呈递、抑制生长和诱导细胞凋亡。我们结合了双启动子系统和 IFN-γ 信号响应启动子,生成了一个名为干扰素感应探针 (ISP) 的报告基因,它通过荧光和生物发光来定量检测 IFN-γ 的反应。通过 PGK 启动子驱动荧光蛋白的表达来补偿转基因的整合位点效应。在五个潜在的 IFN-γ 反应元件中,我们发现干扰素 γ 激活序列 (GAS) 表现出最佳性能。当 ISP-GAS 被引入四种细胞系并接受 IFN-γ 刺激时,观察到剂量依赖性,EC 范围为 0.2 至 0.9 ng/mL,表明 ISP-GAS 可普遍用作 IFN-γ 反应的敏感生物传感器。在同种异体移植模型中,ISP-GAS 表达的癌细胞以 IFN-γ 受体依赖性方式发出生物发光和荧光信号。因此,ISP-GAS 可用于体外和体内定量监测 IFN-γ 反应。

关键词

体内成像、肿瘤微环境、干扰素-γ、双启动子系统。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0db8/10511040/7fff38f2fb42/csf_46_21052-f001.jpg

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