A Green-Light-Responsive System for the Control of Transgene Expression in Mammalian and Plant Cells

合成生物学 生物 光遗传学 基因表达 计算生物学 嗜热菌 转基因 基因 基因表达调控 细胞生物学 转录因子 遗传学 大肠杆菌 神经科学
作者
Claire Chatelle,Rocio Ochoa‐Fernandez,Raphael Engesser,Nils Schneider,Hannes M. Beyer,Alex R. Jones,Jens Timmer,Matías D. Zurbriggen,Wilfried Weber
出处
期刊:ACS Synthetic Biology [American Chemical Society]
卷期号:7 (5): 1349-1358 被引量:94
标识
DOI:10.1021/acssynbio.7b00450
摘要

The ever-increasing complexity of synthetic gene networks and applications of synthetic biology requires precise and orthogonal gene expression systems. Of particular interest are systems responsive to light as they enable the control of gene expression dynamics with unprecedented resolution in space and time. While broadly used in mammalian backgrounds, however, optogenetic approaches in plant cells are still limited due to interference of the activating light with endogenous photoreceptors. Here, we describe the development of the first synthetic light-responsive system for the targeted control of gene expression in mammalian and plant cells that responds to the green range of the light spectrum in which plant photoreceptors have minimal activity. We first engineered a system based on the light-sensitive bacterial transcription factor CarH and its cognate DNA operator sequence CarO from Thermus thermophilus to control gene expression in mammalian cells. The system was functional in various mammalian cell lines, showing high induction (up to 350-fold) along with low leakiness, as well as high reversibility. We quantitatively described the systems characteristics by the development and experimental validation of a mathematical model. Finally, we transferred the system into A. thaliana protoplasts and demonstrated gene repression in response to green light. We expect that this system will provide new opportunities in applications based on synthetic gene networks and will open up perspectives for optogenetic studies in mammalian and plant cells.
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