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首页> 外文期刊>Protein Science: A Publication of the Protein Society >The crystal structures of semi-synthetic aequorins.
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The crystal structures of semi-synthetic aequorins.

机译:半合成水母发光蛋白的晶体结构。

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摘要

The photoprotein aequorin emits light by an intramolecular reaction in the presence of a trace amount of Ca(2+). Semi-synthetic aequorins, produced by replacing the coelenterazine moiety in aequorin with the analogues of coelenterazine, show widely different sensitivities to Ca(2+). To understand the structural basis of the Ca(2+)-sensitivity, we determined the crystal structures of four semi-synthetic aequorins (cp-, i-, br- and n-aequorins) at resolutions of 1.6-1.8 A. In general, the protein structures of these semi-synthetic aequorins are almost identical to native aequorin. Of the four EF-hand domains in the molecule, EF-hand II does not bind Ca(2+), and the loop of EF-hand IV is clearly deformed. It is most likely that the binding of Ca(2+) with EF-hands I and III triggers luminescence. Although little difference was found in the overall structures of aequorins investigated, some significant differences were found in the interactions between the substituents of coelenterazine moiety and the aminoacid residues in the binding pocket. The coelenterazine moieties in i-, br-, and n-aequorins have bulky 2-substitutions, which can interfere with the conformational changes of protein structure that follow the binding of Ca(2+) to aequorin. In cp-aequorin, the cyclopentylmethyl group that substitutes for the original 8-benzyl group does not interact hydrophobically with the protein part, giving the coelenterazine moiety more conformational freedom to promote the light-emitting reaction. The differences of various semi-synthetic aequorins in Ca(2+)-sensitivity and reaction rate are explained by the capability of the involved groups and structures to undergo conformational changes in response to the Ca(2+)-binding.
机译:光蛋白水母发光蛋白在痕量的Ca(2+)存在下通过分子内反应发光。半合成水母发光素,通过用腔肠素的类似物取代水母发光素中的腔肠素部分而产生,显示出对Ca(2+)的广泛不同的敏感性。为了了解Ca(2+)敏感性的结构基础,我们确定了四个半合成水母发光蛋白(cp-,i-,br-和n-水母发光蛋白)的晶体结构,分辨率为1.6-1.8A。 ,这些半合成水母发光蛋白的蛋白质结构几乎与天然水母发光蛋白相同。在分子中的四个EF手域中,EF手II不结合Ca(2+),并且EF手IV的环明显变形。 Ca(2+)与EF手I和III的结合最有可能触发发光。尽管在所研究的水母发光蛋白的总体结构中几乎没有发现差异,但是腔肠素嗪部分的取代基与结合口袋中氨基酸残基之间的相互作用发现了一些显着差异。 i-,br-和n-水母发光蛋白中的腔肠素部分具有庞大的2个取代基,可干扰Ca(2+)与水母发光蛋白结合后蛋白质结构的构象变化。在cp-水母发光蛋白中,取代原始的8-苄基的环戊基甲基不与蛋白质部分发生疏水性相互作用,从而赋予腔肠素部分更大的构象自由度以促进发光反应。 Ca(2+)敏感性和反应速率的各种半合成水母发光蛋白的差异由所涉及的基团和结构响应Ca(2+)结合而发生构象变化的能力解释。

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