Graduate School of Frontier Bioscience, Osaka University, Suita, Japan.
SANKEN (The Institute of Scientific and Industrial Research), Osaka University, Ibaraki, Japan.
Protein Sci. 2022 May;31(5):e4285. doi: 10.1002/pro.4285.
GFP-like chromoproteins (CPs) with non-fluorescence ability have been used as bioimaging probes. Existing CPs have voids in the optical absorption window which limits their extensibility. The development of new CP color is therefore ongoing. Here, we cloned CPs from the jellyfish, Olindias formosa, and developed a completely non-fluorescent monomeric red CP, R-Velour, with an absorption peak at 528 nm. To analyze the photophysical properties from a structural aspect, we determined the crystal structure of R-Velour at a 2.1 Å resolution. R-Velour has a trans-chromophore similar to the green fluorescence protein, Gamillus, derived from the same jellyfish. However, in contrast to the two coplanar chromophoric rings in Gamillus, R-Velour has a large torsion inducing non-fluorescence property. Through site-directed mutagenesis, we surveyed residues surrounding the chromophore and found a key residue, Ser155, which contributes to the generation of four-color variants with the bathochromic and hypsochromic shift of the absorption peak, ranging from 506 to 554 nm. The recently proposed spectrum shift theory, based on the Marcus-Hush model, supports the spectrum shift of these mutants. These findings may support further development of R-Velour variants with useful absorption characteristics for bioimaging, including fluorescence lifetime imaging and photoacoustic imaging.
GFP 样色蛋白(CPs)具有非荧光能力,已被用作生物成像探针。现有的 CPs 在光学吸收窗口有空缺,限制了它们的可扩展性。因此,新的 CP 颜色仍在不断发展。在这里,我们从水母 Olindias formosa 中克隆了 CPs,并开发了一种完全非荧光的单体红色 CP,R-Velour,其吸收峰在 528nm 处。为了从结构方面分析光物理性质,我们以 2.1Å 的分辨率确定了 R-Velour 的晶体结构。R-Velour 的发色团类似于源自同一种水母的绿色荧光蛋白 Gamillus 的顺式发色团。然而,与 Gamillus 中的两个共面发色团环相反,R-Velour 具有较大的扭转诱导非荧光性质。通过定点突变,我们研究了围绕发色团的残基,并发现了一个关键残基 Ser155,它有助于产生具有吸收峰红移和蓝移的四种颜色变体,吸收峰范围从 506nm 到 554nm。基于 Marcus-Hush 模型的最近提出的光谱移位理论支持这些突变体的光谱移位。这些发现可能支持进一步开发具有有用生物成像吸收特性的 R-Velour 变体,包括荧光寿命成像和光声成像。