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首页> 外文期刊>Journal of Molecular Biology >Crystal structure and Raman studies of dsFP483, a cyan fluorescent protein from Discosoma striata
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Crystal structure and Raman studies of dsFP483, a cyan fluorescent protein from Discosoma striata

机译:Discosoma striata蓝绿色荧光蛋白dsFP483的晶体结构和拉曼研究

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摘要

To better understand the diverse mechanisms of spectral tuning operational in fluorescent proteins (FPs), we determined the 2.1-angstrom X-ray structure of dsFP483 from the reef-building coral Discosoma. This protein is a member of the cyan class of Anthozoa FPs and exhibits broad, double-humped excitation and absorbance bands, with a maximum at 437-440 nm and a shoulder at 453 nm. Although these features support a heterogeneous ground state for the protein-intrinsic chromophore, peak fluorescence occurs at 483 nm for all excitation wavelengths, suggesting a common emissive state. Optical properties are insensitive to changes in pH over the entire range of protein stability. The refined crystal structure of the biological tetramer (space group C2) demonstrates that all protomers bear a cis-coplanar chromophore chemically identical with that in green fluorescent protein (GFP). To test the roles of specific residues in color modulation, we investigated the optical properties of the H163Q and K70M variants. Although absorbance bands remain broad, peak excitation maxima are red shifted to 455 and 460 nm, emitting cyan light and green light, respectively. To probe chromophore ground-state features, we collected Raman spectra using 752-nm excitation. Surprisingly, the positions of key Raman bands of wild-type dsFP483 are most similar to those of the neutral GFP chromophore, whereas the K70M spectra are more closely aligned with the anionic form. The Raman data provide further evidence of a mixed ground state with chromophore populations that are modulated by mutation. Possible internal protonation equilibria, structural heterogeneity in the binding sites, and excited-state proton transfer mechanisms are discussed. Structural alignments of dsFP483 with the homologs DsRed, amFP486, and zFP538-K66M suggest that natural selection for cyan is an exquisitely fine-tuned and highly cooperative process involving a network of electrostatic interactions that may vary substantially in composition and arrangement. (c) 2008 Elsevier Ltd. All rights reserved.
机译:为了更好地了解在荧光蛋白(FP)中进行光谱调谐的各种机制,我们从造礁珊瑚的Discosoma中确定了dsFP483的2.1埃X射线结构。该蛋白是蓝藻类花青素FP的成员,并显示出宽峰,双峰激发和吸收带,最大峰在437-440 nm,肩峰在453 nm。尽管这些特征支持蛋白质内在发色团的非均质基态,但对于所有激发波长,峰值荧光都出现在483 nm处,这表明存在共同的发射态。在整个蛋白质稳定性范围内,光学性质对pH的变化不敏感。生物四聚体(空间群C2)的精炼晶体结构表明,所有前体均具有与绿色荧光蛋白(GFP)相同的顺式-共面生色团。为了测试特定残基在颜色调制中的作用,我们研究了H163Q和K70M变体的光学性质。尽管吸收带保持较宽,但峰值激发最大值已红移到455和460 nm,分别发出青色和绿色光。为了探测发色团的基态特征,我们使用752 nm激发收集了拉曼光谱。出人意料的是,野生型dsFP483的关键拉曼带的位置与中性GFP发色团的位置最相似,而K70M光谱与阴离子形式更紧密地对齐。拉曼数据提供了进一步的证据,表明基态与通过突变调节的生色团群体混合。可能的内部质子平衡,结合位点的结构异质性和激发态质子转移机制进行了讨论。 dsFP483与同系物DsRed,amFP486和zFP538-K66M的结构比对表明,对青色的自然选择是一个精细微调和高度协作的过程,涉及静电相互作用的网络,该网络的成分和排列方式可能会发生很大变化。 (c)2008 Elsevier Ltd.保留所有权利。

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