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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Hybrid QM/MM Simulations of the Obelin Bioluminescence and Fluorescence Reveal an Unexpected Light Emitter
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Hybrid QM/MM Simulations of the Obelin Bioluminescence and Fluorescence Reveal an Unexpected Light Emitter

机译:Obelin生物发光和荧光的混合QM / MM模拟揭示了意外的光发射器

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摘要

Obelia longissima, a tiny hydrozoan living in temperate and cold seas, features the Obelin photoprotein, which emits blue light. The Obelin bioluminescence and the Ca~(2+)-discharged Obelin fluorescence spectra show multimodal characteristics that are currently interpreted by the concomitant participation of several light emitters. Up to now, the coelenteramide luminophore is thought to exist in different protonation states, one of them engaged in an ion-pair with the nearby residue, His22. Using hybrid quantum mechanics/molecular mechanics (QM/MM) calculations, we demonstrate that such an ion-pair cannot exist as a stable light emitter. However, when His22 electric neutrality is maintained by means of another proton transfer, the phenolate state of coelenteramide exhibits emission properties in agreement with experiment. Finally, an alternative nonradiative decay pathway, involving the formation of a diradical excited state, is postulated for the first time.
机译:Obelia longissima是生活在温带和冷海中的微小水生动物,其特征在于Obelin光蛋白发出蓝色光。 Obelin生物发光和Ca〜(2+)释放的Obelin荧光光谱显示出多峰态特征,目前这些特征是由几个发光体的伴随参与所解释的。到目前为止,腔腔酰胺发光体被认为以不同的质子化状态存在,其中之一与附近的残基His22形成离子对。使用混合量子力学/分子力学(QM / MM)计算,我们证明了这样的离子对不能作为稳定的发光体存在。然而,当通过另一个质子转移保持His22电中性时,腔肠酰胺的酚盐状态显示出与实验一致的发射性质。最后,首次提出了另一种涉及形成双自由基激发态的非辐射衰变途径。

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