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Вид документа : Статья из журнала
Шифр издания :
Автор(ы) : Liu Z.J., Stepanyuk G.A., Vysotski E.S., Lee J..., Markova S.V., Malikova N.P., Wang B.C.
Заглавие : Crystal structure of obelin after Ca2+-triggered bioluminescence suggests neutral coelenteramide as the primary excited state
Колич.характеристики :6 с
Место публикации : Proc. Natl. Acad. Sci. U. S. A.: NATL ACAD SCIENCES, 2006. - Vol. 103, Is. 8. - С. 2570-2575. - ISSN 0027-8424, DOI 10.1073/pnas.0511142103
Примечания : Cited References: 51
Предметные рубрики: X-RAY-DIFFRACTION
ANGSTROM RESOLUTION
CA2+-REGULATED PHOTOPROTEINS
AEQUORIN BIOLUMINESCENCE
VIOLET BIOLUMINESCENCE
W92F OBELIN
PROTEIN
LUCIFERASE
LIGHT
PROGRAM
Ключевые слова (''Своб.индексиров.''): coelenterazine--photoprotein--ef hand--luciferase--aequorin
Аннотация: The crystal structure at 1.93-angstrom resolution is determined for the Ca2+-discharged obelin containing three bound calcium ions as well as the product of the bioluminescence reaction, coelenteramide. This finding extends the series of available spatial structures of the ligand-dependent conformations of the protein to four, the obelin itself, and those after the bioluminescence reaction with or without bound Ca2+ and/or coelenteramide. Among these structures, global conformational changes are small, typical of the class of "calcium signal modulators" within the EF-hand protein superfamily. Nevertheless, in the active site there are significant repositions of two residues. The His-175 imidazole ring flips becoming almost perpendicular to the original orientation corroborating the crucial importance of this residue for triggering bioluminescence. Tyr-138 hydrogen bonded to the coelenterazine N1-atom in unreacted obelin is moved away from the binding cavity after reaction. However, this Tyr is displaced by a water molecule from within the cavity, which now forms a hydrogen bond to the same atom, the amide N of coelenteramide. From this observation, a reaction scheme is proposed that would result in the neutral coelenteramide as the primary excited state product in photoprotein bioluminescence. From such a higher energy state it is now energetically feasible to account for the shorter wavelength bioluminescence spectra obtained from some photoprotein mutants or to populate the lower energy state of the phenolate anion to yield the blue bioluminescence ordinarily observed from native photoproteins.
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