光遗传学
清脆的
基因组工程
效应器
细胞生物学
Cas9
合成生物学
蛋白质工程
计算生物学
嗜光蛋白
神经科学
生物
基因
隐色素
遗传学
生物化学
生物钟
酶
作者
Lian He,Peng Tan,Lei Zhu,Kai Huang,Nhung T. Nguyen,Rui Wang,Lei Guo,Ling Li,Yuhan Yang,Zixian Huang,Yun Huang,Gang Han,Junfeng Wang,Yubin Zhou
标识
DOI:10.1038/s41589-021-00792-9
摘要
Plant-based photosensors, such as the light-oxygen-voltage sensing domain 2 (LOV2) from oat phototropin 1, can be modularly wired into cell signaling networks to remotely control protein activity and physiological processes. However, the applicability of LOV2 is hampered by the limited choice of available caging surfaces and its preference to accommodate the effector domains downstream of the C-terminal Jα helix. Here, we engineered a set of LOV2 circular permutants (cpLOV2) with additional caging capabilities, thereby expanding the repertoire of genetically encoded photoswitches to accelerate the design of optogenetic devices. We demonstrate the use of cpLOV2-based optogenetic tools to reversibly gate ion channels, antagonize CRISPR-Cas9-mediated genome engineering, control protein subcellular localization, reprogram transcriptional outputs, elicit cell suicide and generate photoactivatable chimeric antigen receptor T cells for inducible tumor cell killing. Our approach is widely applicable for engineering other photoreceptors to meet the growing need of optogenetic tools tailored for biomedical and biotechnological applications.
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