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Crystal structure of obelin after Ca2+-triggered bioluminescence suggests neutral coelenteramide as the primary excited state

机译:Ca2 +触发的生物发光后的obelin的晶体结构表明中性腔肠酰胺为主要激发态

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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.
机译:对于包含三个结合的钙离子以及生物发光反应产物腔肠酰胺的Ca2 +释放的骨灰质,测定了1.93埃分辨率的晶体结构。该发现将蛋白质的配体依赖性构象的一系列可用空间结构扩展到四个,即obelin本身,以及在具有或不具有结合的Ca 2+和/或腔肠酰胺的生物发光反应之后的那些。在这些结构中,整体构象变化很小,是EF手蛋白质超家族中“钙信号调节剂”类型的典型代表。然而,在活性位点中有两个残基的明显重定位。 His-175咪唑环的翻转几乎与原始方向垂直,从而证实了此残基对于触发生物发光至关重要。反应后,未反应的obelin中与腔肠素N1原子键合的Tyr-138氢从结合腔中移出。但是,该Tyr被水分子从腔体内置换出来,该分子现在与同一个原子(腔肠酰胺的酰胺N)形成氢键。根据该观察结果,提出了一种反应方案,该方案将导致中性腔肠酰胺成为光蛋白生物发光中的主要激发态产物。从如此高的能量状态开始,从能量上考虑从某些光蛋白突变体获得的较短波长的生物发光光谱,或填充酚盐阴离子的较低能量状态以产生通常从天然光蛋白观察到的蓝色生物发光,在能量上是可行的。

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