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OPTO-BLUE:一种集成的双向光遗传学慢病毒平台,用于控制光诱导基因表达。

OPTO-BLUE: An Integrated Bidirectional Optogenetic Lentiviral Platform for Controlled Light-Induced Gene Expression.

机构信息

Departamento Biomédico, Facultad de Ciencias de la Salud, Universidad de Antofagasta, Antofagasta 1240000, Chile.

Instituto Antofagasta, Universidad de Antofagasta, Antofagasta 1240000, Chile.

出版信息

Int J Mol Sci. 2023 May 31;24(11):9537. doi: 10.3390/ijms24119537.

Abstract

Regulated systems for transgene expression are useful tools in basic research and a promising platform in biomedicine due to their regulated transgene expression by an inducer. The emergence of optogenetics expression systems enabled the construction of light-switchable systems, enhancing the spatial and temporal resolution of a transgene. The LightOn system is an optogenetic tool that regulates the expression of a gene of interest using blue light as an inducer. This system is based on a photosensitive protein (GAVPO), which dimerizes and binds to the UASG sequence in response to blue light, triggering the expression of a downstream transgene. Previously, we adapted the LightOn system to a dual lentiviral vector system for neurons. Here, we continue the optimization and assemble all components of the LightOn system into a single lentiviral plasmid, the OPTO-BLUE system. For functional validation, we used enhanced green fluorescent protein (EGFP) as an expression reporter (OPTO-BLUE-EGFP) and evaluated the efficiency of EGFP expression by transfection and transduction in HEK293-T cells exposed to continuous blue-light illumination. Altogether, these results prove that the optimized OPTO-BLUE system allows the light-controlled expression of a reporter protein according to a specific time and light intensity. Likewise, this system should provide an important molecular tool to modulate gene expression of any protein by blue light.

摘要

调控型转基因表达系统因其可通过诱导剂调控转基因的表达,因此是基础研究中的有用工具,也是生物医学领域很有前途的平台。光遗传学表达系统的出现使得构建光控开关系统成为可能,从而提高了转基因的时空分辨率。LightOn 系统是一种光遗传学工具,它使用蓝光作为诱导剂来调控目的基因的表达。该系统基于光敏蛋白(GAVPO),当蓝光诱导时,GAVPO 二聚体化并与 UASG 序列结合,从而触发下游转基因的表达。之前,我们将 LightOn 系统适配到用于神经元的双慢病毒载体系统中。在这里,我们继续对其进行优化,并将 LightOn 系统的所有组件组装到单个慢病毒质粒中,即 OPTO-BLUE 系统。为了功能验证,我们使用增强型绿色荧光蛋白(EGFP)作为表达报告基因(OPTO-BLUE-EGFP),并评估了在持续蓝光照射下转染和转导 HEK293-T 细胞时 EGFP 表达的效率。总之,这些结果证明了优化后的 OPTO-BLUE 系统可以根据特定的时间和光强来控制报告蛋白的表达。同样,该系统应该为通过蓝光调控任何蛋白质的基因表达提供一个重要的分子工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6ac2/10253389/3e4e81fc79e8/ijms-24-09537-g001.jpg

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