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胆绿素掺入来自……的蓝细菌视紫红质SPI1085g3中。 (注:原文句末“from.”表述不完整,可能影响准确理解,这里是按现有内容尽量完整翻译)

Biliverdin incorporation into the cyanobacteriochrome SPI1085g3 from .

作者信息

Wu Xian-Jun, Qu Jia-Ying, Wang Chang-Tian, Zhang Ya-Ping, Li Ping-Ping

机构信息

College of Biology and the Environment, Nanjing Forestry University, Nanjing, China.

Collaborative Innovation Center of Sustainable Forestry in Southern China of Jiangsu Province, Nanjing Forestry University, Nanjing, China.

出版信息

Front Microbiol. 2022 Aug 2;13:952678. doi: 10.3389/fmicb.2022.952678. eCollection 2022.

Abstract

Cyanobacteriochromes (CBCRs) bind linear tetrapyrrole chromophores, mostly phycocyanobilin (PCB), and exhibit considerable spectral diversity with a high potential for biotechnological applications. Particular attention has been given to the conversion into intrinsic biliverdin (BV) incorporation due to the absence of PCB in mammalian cells. Our recent study discovered that a red/green CBCR of , SPI1085g3, was covalently attached to PCB and exhibited strong red fluorescence with a unique red/dark switch. In this study, we found that SPI1085g3 could be modestly chromophorylated with BV and absorb somewhat shifted (10 nm) red light, while the single C448S mutant could efficiently bind BV and exhibit unidirectional photoconversion and moderate dark reversion. The fluorescence in its dark-adapted state was switched off by red light, followed by a moderate recovery in the dark, and these were properties similar to those of PCB-binding SPI1085g3. Furthermore, by introducing the CY motif into the conserved CH motif for chromophore attachment, we developed another variant, C448S_CY, which showed increased BV-binding efficiency. As expected, C448S_CY had a significant enhancement in fluorescence quantum yield, reaching that of PCB-binding SPI1085g3 (0.14). These BV-binding CBCRs offer an improved platform for the development of unique photoswitchable fluorescent proteins compared with PCB-binding CBCRs.

摘要

蓝细菌色素(CBCRs)结合线性四吡咯发色团,主要是藻蓝胆素(PCB),并表现出相当大的光谱多样性,具有很高的生物技术应用潜力。由于哺乳动物细胞中不存在PCB,因此特别关注向内在的藻胆素(BV)掺入的转化。我们最近的研究发现,SPI1085g3的一种红/绿CBCR与PCB共价连接,并表现出强烈的红色荧光以及独特的红/暗切换。在本研究中,我们发现SPI1085g3可以被BV适度发色,吸收稍微偏移(10 nm)的红光,而单一的C448S突变体可以有效地结合BV并表现出单向光转化和适度的暗逆转。其暗适应状态下的荧光被红光关闭,随后在黑暗中适度恢复,这些特性与结合PCB的SPI1085g3相似。此外,通过将CY基序引入保守的用于发色团附着的CH基序中,我们开发了另一种变体C448S_CY,其显示出提高的BV结合效率。正如预期的那样,C448S_CY的荧光量子产率有显著提高,达到了结合PCB的SPI1085g3的水平(0.14)。与结合PCB的CBCRs相比,这些结合BV的CBCRs为开发独特的光开关荧光蛋白提供了一个改进的平台。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/99e6/9378818/80deb4b9b689/fmicb-13-952678-g001.jpg

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