Microbiology Laboratory, Institute of Viticulture and Agri-food Research (IVAGRO), Environmental and Marine Sciences Faculty. University of Cadiz (UCA), 11510 Puerto Real, Spain.
Tecnologico de Monterrey, Escuela de Ingenieria y Ciencias, 76130 Queretaro, Mexico.
Int J Mol Sci. 2020 Mar 5;21(5):1784. doi: 10.3390/ijms21051784.
is considered a model organism due to its bioluminescence capacity linked to circadian rhythms. The mechanisms underlying the bioluminescent phenomenon have been well characterized in dinoflagellates; however, there are still some aspects that remain an enigma. Such is the case of the presence and diversity of the luciferin-binding protein (LBP), as well as the synthesis process of luciferin. Here we carry out a review of the literature in relation to the molecular players responsible for bioluminescence in dinoflagellates, with particular interest in . We also carried out a phylogenetic analysis of the conservation of protein sequence, structure and evolutionary pattern of these key players. The basic structure of the luciferase (LCF) is quite conserved among the sequences reported to date for dinoflagellate species, but not in the case of the LBP, which has proven to be more variable in terms of sequence and structure. In the case of luciferin, its synthesis has been shown to be complex process with more than one metabolic pathway involved. The glutathione S-transferase (GST) and the P630 or blue compound, seem to be involved in this process. In the same way, various hypotheses regarding the role of bioluminescence in dinoflagellates are exposed.
被认为是一种模式生物,因为其生物发光能力与昼夜节律有关。甲藻中的生物发光现象的机制已经得到了很好的描述;然而,仍有一些方面仍是一个谜。例如,荧光素结合蛋白 (LBP) 的存在和多样性,以及荧光素的合成过程。在这里,我们对与甲藻生物发光有关的分子参与者的文献进行了综述,特别关注 。我们还对这些关键参与者的蛋白质序列、结构和进化模式的保守性进行了系统发育分析。迄今为止报道的甲藻物种的荧光酶 (LCF) 基本结构在序列上相当保守,但 LBP 并非如此,其序列和结构都具有更大的可变性。就荧光素而言,其合成过程被证明是一个复杂的过程,涉及多个代谢途径。谷胱甘肽 S-转移酶 (GST) 和 P630 或蓝色化合物似乎参与了这一过程。同样,也提出了关于生物发光在甲藻中的作用的各种假设。