Performance of near-infrared probes and optogenetic tools derived from bacterial phytochromes is limited by availability of their biliverdin chromophore. To address this, we use a biliverdin reductase-A knock-out mouse model (Blvra(-/-)), which elevates endogenous biliverdin levels. We show that Blvraâ»/â» significantly enhances function of bacterial phytochrome-based systems. Light-controlled transcription using iLight optogenetic tool improves ~25-fold in Blvra(-/-) cells, compared to wild-type controls, and achieves ~100-fold activation in neurons. Light-induced insulin production in Blvra(-/-) mice reduces blood glucose by ~60% in diabetes model. To overcome depth limitations in imaging, we employ 3D photoacoustic, ultrasound, and two-photon fluorescence microscopy. This enables simultaneous photoacoustic imaging of DrBphP in neurons and super-resolution ultrasound localization microscopy of brain vasculature at depths of ~7âmm through intact scalp and skull. Two-photon microscopy achieves cellular resolution of miRFP720-expressing neurons at ~2.2âmm depth. Overall, Blvra(-/-) model represents powerful platform for improving efficacy of biliverdin-dependent tools for deep-tissue imaging and optogenetic manipulation.
Deep-tissue high-sensitivity multimodal imaging and optogenetic manipulation enabled by biliverdin reductase knockout.
胆绿素还原酶敲除实现了深层组织高灵敏度多模态成像和光遗传学操作
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作者:Kasatkina Ludmila A, Ma Chenshuo, Sheng Huaxin, Lowerison Matthew, Menozzi Luca, Baloban Mikhail, Tang Yuqi, Xu Yirui, Humayun Lucas, Vu Tri, Song Pengfei, Yao Junjie, Verkhusha Vladislav V
| 期刊: | Nature Communications | 影响因子: | 15.700 |
| 时间: | 2025 | 起止号: | 2025 Jul 14; 16(1):6469 |
| doi: | 10.1038/s41467-025-61532-4 | 研究方向: | 免疫/内分泌 |
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