8BXP
SfGFP C148 F206 mutant
8BXP の概要
| エントリーDOI | 10.2210/pdb8bxp/pdb |
| 分子名称 | Green fluorescent protein (2 entities in total) |
| 機能のキーワード | gfp, green fluorescent protein, protein engineering, mutant, luminescent protein |
| 由来する生物種 | Aequorea victoria |
| タンパク質・核酸の鎖数 | 2 |
| 化学式量合計 | 52523.30 |
| 構造登録者 | |
| 主引用文献 | Ahmed, R.D.,Vitsupakorn, D.,Hartwell, K.D.,Albalawi, K.,Rizkallah, P.J.,Watson, P.D.,Jones, D.D. Chromophore charge-state switching through copper-dependent homodimerisation of an engineered green fluorescent protein. Chem Sci, 2025 Cited by PubMed Abstract: Here, we have linked one of the most common protein-protein interaction events, homodimerisation, to an essential trace metal, copper, through engineering green fluorescent protein. Mutation of H148 to cysteine promotes the neutral phenolic chromophore in the monomer that excites predominantly at ∼400 nm. Homodimerisation a copper-dependent disulphide bridge switches the chromophore to the charged phenolate that excites at ∼490 nm. The result is a ∼30 fold increase in the fluorescence emission ratio. Homodimerisation kinetics are further improved by optimising the sfGFP homodimer interface, generating the variant termed GFP-diS2. Structures of the monomeric and dimeric GFP-diS2 suggest that charge switching is through peptide bond flipping and the formation of a buried organised water network around the chromophore that spans the interface region. Fusion to a leucine zipper protein dimerisation element greatly increased the GFP-diS2 association rate making it a more effective copper sensor and with Cu(i) instigating the signal change quicker and at lower ion concentrations than Cu(ii). Thus, GFP-diS2 provides the framework for generating a sensitive genetically encoded copper sensor and will eventually be adapted to monitor one of the most important protein-protein interactions in biology, homo-oligomerisation. PubMed: 41142394DOI: 10.1039/d5sc06589e 主引用文献が同じPDBエントリー |
| 実験手法 | X-RAY DIFFRACTION (1.79 Å) |
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