光电开关
光遗传学
胆绿素
光敏色素
远红色
红灯
光毒性
生物物理学
清脆的
化学
细胞生物学
生物
生物化学
神经科学
基因
血红素
血红素加氧酶
植物
光化学
体外
酶
作者
Yuto Kuwasaki,Kazushi Suzuki,Gaigai Yu,Shota Yamamoto,Takahiro Otabe,Yuki Kakihara,Michiru Nishiwaki,Keita Miyake,Keiji Fushimi,Ramsey Bekdash,Yoshihiro Shimizu,Rei Narikawa,Takahiro Nakajima,Masayuki Yazawa,Moritoshi Sato
标识
DOI:10.1038/s41587-022-01351-w
摘要
Red light penetrates deep into mammalian tissues and has low phototoxicity, but few optogenetic tools that use red light have been developed. Here we present MagRed, a red light-activatable photoswitch that consists of a red light-absorbing bacterial phytochrome incorporating a mammalian endogenous chromophore, biliverdin and a photo-state-specific binder that we developed using Affibody library selection. Red light illumination triggers the binding of the two components of MagRed and the assembly of split-proteins fused to them. Using MagRed, we developed a red light-activatable Cre recombinase, which enables light-activatable DNA recombination deep in mammalian tissues. We also created red light-inducible transcriptional regulators based on CRISPR-Cas9 that enable an up to 378-fold activation (average, 135-fold induction) of multiple endogenous target genes. MagRed will facilitate optogenetic applications deep in mammalian organisms in a variety of biological research areas.
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