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一种新型生物发光生物传感器,用于定量分析细胞焦亡效应蛋白 GSDMD 的分子内相互作用和水平。

A Novel Bioluminescent Biosensor Quantifying Intramolecular Interaction and Levels of Pyroptosis Effector GSDMD.

机构信息

Department of Pathology and Molecular Medicine, Queen's University, Kingston, ON K7L 3N6, Canada.

出版信息

Cells. 2024 Sep 25;13(19):1606. doi: 10.3390/cells13191606.

Abstract

Gasdermin D (GSDMD) is a key executor of pyroptosis, a form of inflammation-induced programmed cell death. Recently, GSDMD has been shown to play important roles in the development of various inflammatory-related human diseases including heart failure and cancer, suggesting that it is a promising therapeutic target for these diseases. While extensive studies on GSDMD's role in pyroptosis have been reported, it is challenging to study its function due to the lack of enzymatic activity of GSDMD. In this study, we used the NanoBiT technology to develop a novel GSDMD bioluminescent biosensor (GSDMD-BS) that detects the amount of non-cleaved GSDMD. This sensor allows us to quantify GSDMD's intramolecular interactions, the amounts of uncleaved GSDMD after caspase-1 cleavage, and expression levels in living cells. In vitro experiments using purified GSDMD-BS also confirmed the sensor's accuracy in reporting GSDMD levels and cleavage. Moreover, the potential for in vivo application was demonstrated in a xenograft mouse model. In conclusion, we have developed a GSDMD biosensor that is a valuable tool for real-time monitoring of GSDMD dynamics and pyroptosis. This biosensor will significantly expedite pyroptosis research and can be used for high-throughput screening for drugs targeting GSDMD for the therapy of many inflammation-related diseases.

摘要

Gasdermin D (GSDMD) 是细胞焦亡这一炎症诱导的程序性细胞死亡形式的关键执行者。最近,研究表明 GSDMD 在心力衰竭和癌症等各种与炎症相关的人类疾病的发展中发挥着重要作用,这表明它是这些疾病有前途的治疗靶点。虽然已经有大量关于 GSDMD 在细胞焦亡中作用的研究报告,但由于 GSDMD 缺乏酶活性,研究其功能具有挑战性。在这项研究中,我们使用 NanoBiT 技术开发了一种新型的 GSDMD 生物发光生物传感器 (GSDMD-BS),用于检测未切割 GSDMD 的量。该传感器使我们能够定量测量 GSDMD 的分子内相互作用、caspase-1 切割后未切割 GSDMD 的量以及活细胞中的表达水平。使用纯化的 GSDMD-BS 的体外实验也证实了该传感器在报告 GSDMD 水平和切割方面的准确性。此外,还在异种移植小鼠模型中证明了其体内应用的潜力。总之,我们开发了一种 GSDMD 生物传感器,这是实时监测 GSDMD 动力学和细胞焦亡的有价值的工具。该生物传感器将极大地加速细胞焦亡研究,并可用于针对 GSDMD 的高通量药物筛选,以治疗许多与炎症相关的疾病。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bd33/11475789/585e43b3593c/cells-13-01606-g001.jpg

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