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首页> 外文期刊>Biochemistry >Three-dimensional structure of bacterial luciferase from Vibrio harveyi at 2.4 A resolution.
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Three-dimensional structure of bacterial luciferase from Vibrio harveyi at 2.4 A resolution.

机译:哈维弧菌细菌荧光素酶的三维结构,分辨率为2.4A。

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摘要

Luciferases are a class of enzymes that generate light in the visible spectrum. Luciferase from luminous marine bacteria is an alpha-beta heterodimer monooxygenase that catalyzes the oxidation of FMNH2 and a long-chain aliphatic aldehyde. The X-ray crystal structure of bacterial luciferase from Vibrio harveyi has been determined to 2.4 A resolution. The structure was solved by a combination of multiple isomorphous replacement and molecular averaging between the two heterodimers in the asymmetric unit. Each subunit folds into a (beta/alpha)8 barrel motif, and dimerization is mediated through a parallel four-helix bundle centered on a pseudo 2-fold axis that relates the structurally similar subunits. The vicinity of the active site has been identified on the alpha subunit by correlations with similar protein motifs and previous biochemical studies. The structure presented here represents the first molecular model of a bioluminescent enzyme.
机译:萤光素酶是一类在可见光谱中产生光的酶。来自发光海洋细菌的萤光素酶是一种α-β异二聚体单加氧酶,可催化FMNH2和长链脂肪醛的氧化。哈维弧菌细菌荧光素酶的X射线晶体结构已确定为2.4 A分辨率。通过多个同构置换和不对称单元中两个异二聚体之间的分子平均的组合来解决结构。每个亚基折叠成(beta / alpha)8桶基元,二聚化是通过以假2倍轴为中心的平行四螺旋束介导的,该假2倍轴与结构相似的亚基相关。通过与相似的蛋白质基序和先前的生化研究相关联,已经在α亚基上鉴定了活性位点的附近。这里介绍的结构代表了生物发光酶的第一个分子模型。

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