光遗传学
嗜光蛋白
隐色素
效应器
黄素组
分子开关
生物物理学
蓝光
合成生物学
细胞内
生物
细胞生物学
神经科学
纳米技术
化学
计算生物学
生物化学
生物钟
材料科学
光电子学
昼夜节律
有机化学
酶
分子
作者
Andrea Flores-Ibarra,Raiza N.A. Maia,Bence Olasz,Jonathan R. Church,Guillaume Gotthard,Igor Schapiro,Joachim Heberle,Przemyslaw Nogly
标识
DOI:10.1016/j.jmb.2023.168356
摘要
The light-oxygen-voltage (LOV) domains of phototropins emerged as essential constituents of light-sensitive proteins, helping initiate blue light-triggered responses. Moreover, these domains have been identified across all kingdoms of life. LOV domains utilize flavin nucleotides as co-factors and undergo structural rearrangements upon exposure to blue light, which activates an effector domain that executes the final output of the photoreaction. LOV domains are versatile photoreceptors that play critical roles in cellular signaling and environmental adaptation; additionally, they can noninvasively sense and control intracellular processes with high spatiotemporal precision, making them ideal candidates for use in optogenetics, where a light signal is linked to a cellular process through a photoreceptor. The ongoing development of LOV-based optogenetic tools, driven by advances in structural biology, spectroscopy, computational methods, and synthetic biology, has the potential to revolutionize the study of biological systems and enable the development of novel therapeutic strategies.
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