Efficient synthesis of phycocyanobilin in mammalian cells for optogenetic control of cell signaling

Author:

Uda Youichi,Goto Yuhei,Oda Shigekazu,Kohchi Takayuki,Matsuda Michiyuki,Aoki KazuhiroORCID

Abstract

Optogenetics is a powerful tool to precisely manipulate cell signaling in space and time. For example, protein activity can be regulated by several light-induced dimerization (LID) systems. Among them, the phytochrome B (PhyB)–phytochrome-interacting factor (PIF) system is the only available LID system controlled by red and far-red lights. However, the PhyB–PIF system requires phycocyanobilin (PCB) or phytochromobilin as a chromophore, which must be artificially added to mammalian cells. Here, we report an expression vector that coexpresses HO1 and PcyA with Ferredoxin and Ferredoxin-NADP+ reductase for the efficient synthesis of PCB in the mitochondria of mammalian cells. An even higher intracellular PCB concentration was achieved by the depletion of biliverdin reductase A, which degrades PCB. The PCB synthesis and PhyB–PIF systems allowed us to optogenetically regulate intracellular signaling without any external supply of chromophores. Thus, we have provided a practical method for developing a fully genetically encoded PhyB–PIF system, which paves the way for its application to a living animal.

Funder

MEXT | JST | Core Research for Evolutional Science and Technology

Japan Agency for Medical Research and Development

MEXT | Japan Society for the Promotion of Science

Hori Sciences and Arts Foundation

Takeda Medical Research Foundation

The Nakajima Foundation

Publisher

Proceedings of the National Academy of Sciences

Subject

Multidisciplinary

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