da Silva Luís Pinto, Esteves da Silva Joaquim C G
Centro de Investigação em Química (CIQ-UP), Departamento de Química e Bioquímica, Universidade do Porto , Campo Alegre 687, 4169-007 Porto, Portugal.
J Chem Theory Comput. 2011 Apr 12;7(4):809-17. doi: 10.1021/ct200003u. Epub 2011 Mar 7.
Firefly luciferase is the most studied bioluminescence system, and its catalyzed reactions have been relatively well characterized. However, the color tuning mechanism that leads to firefly multicolor bioluminescence is still unknown, nor is consensual which is the yellow-green and red emitters. Computational studies have been essential in the study of oxyluciferin (OxyLH2) chemi- and bioluminescence and are responsible for most of our knowledge of this natural phenomenon. The objective of this manuscript is the analysis of the benefits and the conclusions derived from the theoretical studies of the light emitter, OxyLH2, and its applications on bioluminescence research.
萤火虫荧光素酶是研究最多的生物发光系统,其催化反应已得到相对较好的表征。然而,导致萤火虫多色生物发光的颜色调节机制仍然未知,对于黄绿色和红色发光体也尚无共识。计算研究在氧化荧光素(OxyLH2)化学发光和生物发光的研究中至关重要,并且是我们对这种自然现象的大部分认识的来源。本手稿的目的是分析从发光体OxyLH2的理论研究中获得的益处和结论,以及其在生物发光研究中的应用。