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Photoconversion and Fluorescence Properties of a Red/Green-Type Cyanobacteriochrome AM1_C0023g2 That Binds Not Only Phycocyanobilin But Also Biliverdin

机译:红色/绿色型蓝藻色素AM1_C0023g2不仅结合藻蓝素而且还结合了胆绿素的光转换和荧光性质。

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摘要

Cyanobacteriochromes (CBCRs) are distantly related to the red/far-red responsive phytochromes. Red/green-type CBCRs are widely distributed among various cyanobacteria. The red/green-type CBCRs covalently bind phycocyanobilin (PCB) and show red/green reversible photoconversion. Recent studies revealed that some red/green-type CBCRs from chlorophyll d-bearing cyanobacterium Acaryochloris marina covalently bind not only PCB but also biliverdin (BV). The BV-binding CBCRs show far-red/orange reversible photoconversion. Here, we identified another CBCR (AM1_C0023g2) from A. marina that also covalently binds not only PCB but also BV with high binding efficiencies, although BV chromophore is unstable in the presence of urea. Replacement of Ser334 with Gly resulted in significant improvement in the yield of the BV-binding holoprotein, thereby ensuring that the mutant protein is a fine platform for future development of optogenetic switches. We also succeeded in detecting near-infrared fluorescence from mammalian cells harboring PCB-binding AM1_C0023g2 whose fluorescence quantum yield is 3.0%. Here the PCB-binding holoprotein is shown as a platform for future development of fluorescent probes.
机译:蓝细菌色素(CBCRs)与红色/远红色响应性植物色素有密切的关系。红色/绿色CBCRs在各种蓝细菌中广泛分布。红色/绿色CBCRs共价结合藻蓝蛋白(PCB),并显示红色/绿色可逆光转化。最近的研究表明,一些来自叶绿素d的蓝藻Acaryochloris marina的红色/绿色CBCR不仅共价结合PCB,而且还与biliverdin(BV)结合。结合BV的CBCR显示出远红色/橙色可逆的光电转换。在这里,我们确定了另一种来自滨海曲霉的CBCR(AM1_C0023g2),它不仅以高效率结合BPCB,而且以高结合效率结合BV,尽管BV生色团在存在尿素的情况下不稳定。用Gly取代Ser334可显着提高BV结合性全蛋白的产量,从而确保突变蛋白是光遗传开关未来发展的良好平台。我们还成功地从含有PCB结合AM1_C0023g2的哺乳动物细胞中检测了近红外荧光,该细胞的荧光量子产率为3.0%。在这里,与PCB结合的全蛋白被显示为荧光探针未来开发的平台。

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