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1.
FEBS J ; 286(12): 2329-2340, 2019 06.
Artigo em Inglês | MEDLINE | ID: mdl-30817081

RESUMO

Photoactivatable fluorescent proteins (PA-FPs) are a powerful non-invasive tool in high-resolution live-cell imaging. They can be converted from an inactive to an active form by light, enabling the spatial and temporal trafficking of proteins and cell dynamics. PA-FPs have been previously generated by mutating selected residues in the chromophore or in its close proximity. A new strategy to generate PA-FPs is the genetic incorporation of unnatural amino acids (UAAs) containing photocaged groups using unique suppressor tRNA/aminoacyl-tRNA synthetase pairs. We set out to develop a photoactivatable GFP variant suitable for time-resolved structural studies. Here, we report the crystal structure of superfolder GFP (sfGFP) containing the UAA ortho-nitrobenzyl-tyrosine (ONBY) at position 66 and its spectroscopic characterization. Surprisingly, the crystal structure (to 2.7 Å resolution) reveals a dimeric domain-swapped arrangement of sfGFP66ONBY with residues 1-142 of one molecule associating with residues 148-234 from another molecule. This unusual domain-swapped structure supports a previously postulated GFP folding pathway that proceeds via an equilibrium intermediate.


Assuntos
Aminoácidos/genética , Proteínas de Fluorescência Verde/química , Conformação Proteica , Dobramento de Proteína , Aminoácidos/química , Aminoacil-tRNA Sintetases/genética , Cristalografia por Raios X , Escherichia coli/genética , Proteínas de Fluorescência Verde/genética , Methanocaldococcus/genética , Imagem Molecular/métodos , Mutação/genética , Fenilalanina/química , RNA de Transferência/química , RNA de Transferência/genética , Tirosina/genética
2.
Anal Bioanal Chem ; 409(28): 6549-6558, 2017 Nov.
Artigo em Inglês | MEDLINE | ID: mdl-28900708

RESUMO

We have developed a method to determine apparent activation energies of dissociation for ionized protein-protein complexes in the gas phase using electrospray ionization mass spectrometry following the Rice-Ramsperger-Kassel-Marcus quasi-equilibrium theory. Protein-protein complexes were formed in solution, transferred into the gas phase, and separated from excess free protein by ion mobility filtering. Afterwards, complex disassembly was initiated by collision-induced dissociation with step-wise increasing energies. Relative intensities of ion signals were used to calculate apparent activation energies of dissociation in the gas phase by applying linear free energy relations. The method was developed using streptavidin tetramers. Experimentally determined apparent gas-phase activation energies for dissociation ([Formula: see text]) of complexes consisting of Fc parts from immunoglobulins (IgG-Fc) and three closely related protein G' variants (IgG-Fc•protein G'e, IgG-Fc•protein G'f, and IgG-Fc•protein G'g) show the same order of stabilities as can be inferred from their in-solution binding constants. Differences in stabilities between the protein-protein complexes correspond to single amino acid residue exchanges in the IgG-binding regions of the protein G' variants. Graphical abstract Electrospray mass spectrometry and collision-induced dissociation delivers apparent activation energies and supramolecular bond force constants of protein-protein complexes in the gas phase.


Assuntos
Fragmentos Fc das Imunoglobulinas/metabolismo , Imunoglobulina G/metabolismo , Espectrometria de Massas por Ionização por Electrospray/métodos , Proteínas de Bactérias/química , Proteínas de Bactérias/metabolismo , Humanos , Fragmentos Fc das Imunoglobulinas/química , Imunoglobulina G/química , Simulação de Acoplamento Molecular , Ligação Proteica , Domínios Proteicos , Isoformas de Proteínas/química , Isoformas de Proteínas/metabolismo , Multimerização Proteica , Termodinâmica
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