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首页> 外文期刊>Journal of molecular catalysis, B. Enzymatic >Confirmation of color determination factors for Ser286 derivatives of firefly luciferase from Luciola cruciata (LUC-G)
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Confirmation of color determination factors for Ser286 derivatives of firefly luciferase from Luciola cruciata (LUC-G)

机译:萤火虫萤火虫荧光素酶Ser286衍生物的色度测定因子的确认(LUC-G)

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摘要

The bioluminescence color of firefly luciferase including its mutants ranges from green to red (530-640 nm) and is affected by the species of firefly, the reaction conditions, and by the substitution of amino acids. Although there is a general agreement that the microenvironment mechanism is the dominant model for the color determination of firefly luciferase, a complete mechanism has not been shown, partially due to the lack of comprehensive data on which amino acid positions alter the bioluminescent color. In this paper, a mutant library of position serine 286 (S286) in Luciola cruciata luciferase (LUC-G) was constructed and characterized. The substitution of S286 resulted in a drastic red shift in bioluminescence color (>600nm), and only glycine (G) and alanine (A) mutants remained yellow-green. To explain this color difference, molecular dynamics (MD) calculations of 3 S286 derivatives (S286G, S286N, and S2861), in addition to wild type (WT), were performed. The active site rigidity and active site hydrogen bonding networks were compared to WT for each derivative. The results suggested that both factors affected the active site environment and affected the difference in bioluminescence colors in LUC-G S286 derivatives.
机译:萤火虫荧光素酶的生物发光色(包括其突变体)范围从绿色到红色(530-640 nm),并且受萤火虫种类,反应条件和氨基酸取代的影响。尽管人们普遍认为微环境机制是萤火虫荧光素酶颜色测定的主要模型,但由于缺乏有关氨基酸位置改变生物发光颜色的综合数据,因此尚未显示出完整的机制。在本文中,构建并表征了Luciola cruciata luciferase(LUC-G)中位置丝氨酸286(S286)的突变体文库。 S286的取代导致生物发光颜色发生剧烈的红移(> 600nm),只有甘氨酸(G)和丙氨酸(A)突变体保持黄绿色。为了解释这种色差,除了野生型(WT)外,还对3种S286衍生物(S286G,S286N和S2861)进行了分子动力学(MD)计算。对于每种衍生物,将活性位点刚性和活性位点氢键网络与WT进行比较。结果表明,这两个因素都影响了活性位点环境并影响了LUC-G S286衍生物中生物发光颜色的差异。

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