Genetically engineered secretory horseradish peroxidase is a sensitive, stable, and affordable non-lytic reporter gene system for real-time promoter activity management.

IF 5.7 3区 生物学 Q1 BIOCHEMICAL RESEARCH METHODS
Mu-Shen Chang, Chia-Yi Lee, Yu-Yen Chang, Pin-Jie Li, Hsin-Yu Wu, En-Shuo Liu, Hsin-Kai Huang, Wen-Wei Lin
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Abstract

A light-producing secretory protein that is collectible through the supernatant of a culture medium is essential in a cell-based reporter gene system and allows for real-time monitoring of upstream events of a promoter. Compared to other secretory luciferases, Cypridina luciferase (CLuc) coupled with vargulin emits the brightest signal; however, the signal half-life suffers constantly from the fast oxidation process of the substrate, resulting in a rapid signal depletion, which makes the detection signal short and unstable. In this study, we aimed to develop a new reporter gene system with a more stable signal and lower cost, whilst retaining sensitivity comparable to the CLuc reporter gene system. To this end, we genetically engineered horseradish peroxidase (HRP) to be secreted with mammalian cells. The secreted form HRP (sHRP) was then used as a proof-of-concept of real-time cell signaling management. First, we made sure that HRP retained its enzymatic function with our genetic engineering process and confirmed that it was collectable and suitable for side-by-side comparison with CLuc. sHRP showed comparable sensitivity, 7 to 80 times more signal half-life compared to CLuc, and precisely reported NF-κB-regulated promoter in response to stimulation with TNF-α. sHRP was not affected by multiple cell culturing media and was calculated to be at least 9 times cheaper than the CLuc reporter gene system. Thus, sHRP offers new insight into the reporter gene system for drug screening and intracellular signaling management and provides a precise, sustainable and affordable operating environment.

基因工程分泌型辣根过氧化物酶是一种敏感、稳定、价格合理的非裂解型报告基因系统,用于实时启动子活性管理。
通过培养基上清收集的发光分泌蛋白在基于细胞的报告基因系统中是必不可少的,并允许对启动子的上游事件进行实时监测。与其他分泌型荧光素酶相比,与vargulin偶联的塞浦路那荧光素酶(cydina luciferase, CLuc)发出的信号最亮;然而,信号的半衰期不断受到衬底快速氧化过程的影响,导致信号快速耗尽,使得检测信号短而不稳定。在本研究中,我们旨在开发一种新的报告基因系统,该系统具有更稳定的信号和更低的成本,同时保持与CLuc报告基因系统相当的灵敏度。为此,我们对辣根过氧化物酶(HRP)进行基因工程改造,使其与哺乳动物细胞一起分泌。分泌形式的HRP (sHRP)随后被用作实时细胞信号管理的概念验证。首先,我们通过基因工程过程确保HRP保留其酶功能,并确认其可收集并适合与CLuc进行并排比较。sHRP具有相当的敏感性,信号半衰期是CLuc的7到80倍,并且精确报道了NF-κ b调控的启动子对TNF-α刺激的反应。sHRP不受多种细胞培养基的影响,并且计算出比CLuc报告基因系统便宜至少9倍。因此,sHRP为药物筛选和细胞内信号管理的报告基因系统提供了新的见解,并提供了一个精确、可持续和负担得起的操作环境。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Journal of Biological Engineering
Journal of Biological Engineering BIOCHEMICAL RESEARCH METHODS-BIOTECHNOLOGY & APPLIED MICROBIOLOGY
CiteScore
7.10
自引率
1.80%
发文量
32
审稿时长
17 weeks
期刊介绍: Biological engineering is an emerging discipline that encompasses engineering theory and practice connected to and derived from the science of biology, just as mechanical engineering and electrical engineering are rooted in physics and chemical engineering in chemistry. Topical areas include, but are not limited to: Synthetic biology and cellular design Biomolecular, cellular and tissue engineering Bioproduction and metabolic engineering Biosensors Ecological and environmental engineering Biological engineering education and the biodesign process As the official journal of the Institute of Biological Engineering, Journal of Biological Engineering provides a home for the continuum from biological information science, molecules and cells, product formation, wastes and remediation, and educational advances in curriculum content and pedagogy at the undergraduate and graduate-levels. Manuscripts should explore commonalities with other fields of application by providing some discussion of the broader context of the work and how it connects to other areas within the field.
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