4.8 Article

Near-infrared optogenetic pair for protein regulation and spectral multiplexing

期刊

NATURE CHEMICAL BIOLOGY
卷 13, 期 6, 页码 633-+

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NATURE PUBLISHING GROUP
DOI: 10.1038/nchembio.2343

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资金

  1. US National Institutes of Health [GM105997, GM108579, NS099573]
  2. EU [ERC-2013-ADG-340233]
  3. Academy of Finland [263371, 266992]
  4. Academy of Finland (AKA) [266992, 263371, 266992, 263371] Funding Source: Academy of Finland (AKA)

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Multifunctional optogenetic systems are in high demand for use in basic and biomedical research. Near-infrared-light-inducible binding of bacterial phytochrome BphP1 to its natural PpsR2 partner is beneficial for simultaneous use with blue-light-activatable tools. However, applications of the BphP1-PpsR2 pair are limited by the large size, multidomain structure and oligomeric behavior of PpsR2. Here, we engineered a single-domain BphP1 binding partner, Q-PAS1, which is three-fold smaller and lacks oligomerization. We exploited a helix-PAS fold of Q-PAS1 to develop several near-infrared-light-controllable transcription regulation systems, enabling either 40-fold activation or inhibition. The light-induced BphP1-Q-PAS1 interaction allowed modification of the chromatin epigenetic state. Multiplexing the BphP1-Q-PAS1 pair with a blue-light-activatable LOV-domain-based system demonstrated their negligible spectral crosstalk. By integrating the Q-PAS1 and LOV domains in a single optogenetic tool, we achieved tridirectional protein targeting, independently controlled by near-infrared and blue light, thus demonstrating the superiority of Q-PAS1 for spectral multiplexing and engineering of multicomponent systems.

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