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深海虾类细长脚磷虾生物发光系统的特性及反应机制

Properties and reaction mechanism of the bioluminescence system of the deep-sea shrimp Oplophorus gracilorostris.

作者信息

Shimomura O, Masugi T, Johnson F H, Haneda Y

出版信息

Biochemistry. 1978 Mar 21;17(6):994-8. doi: 10.1021/bi00599a008.

Abstract

The bioluminescent reaction of Oplophorus takes place when the oxidation of coelenterazine (the luciferin) with molecular oxygen is catalyzed by Oplophorus luciferase, resulting in light of maximum intensity at 462 nm and the products CO2 and coelenteramide. Oplophorus luciferase has now been obtained in a highly purified state. Optimum luminescence occurs at pH 9 in the presence of 0.05--0.1 M NaCl at 40 degrees C, and, due to the unusual resistance of this enzyme to heat, visible luminescence occurs at temperatures above 70 degrees C when partially purified enzyme is used. The specific activity of purest preparations is 1.75 X 10(15) photons s-1 mg-1 at 23 degrees C. At pH 8.7, native luciferase has a molecular weight of approximately 130 000, apparently comprising 4 monomers of 31 000; at lower pHs, the native luciferase tends to polymerize. The quantum yield of coelenterazine is 0.34 at 22 degrees C with this enzyme. After the luminescent reaction, the spent solution is nonfluorescent, and likewise solutions of luciferase alone. When the bioluminescent reaction was carried out in the presence of 18O2, the product CO2 contained more than 50% C18O16O, supporting the dioxetane mechanism, but without ruling out the linear peroxide mechanism.

摘要

萤乌贼的生物发光反应发生在腔肠素(荧光素)被分子氧氧化时,该氧化反应由萤乌贼荧光素酶催化,产生最大强度在462纳米的光以及产物二氧化碳和腔肠酰胺。现在,萤乌贼荧光素酶已被高度纯化。在40℃、0.05 - 0.1M氯化钠存在的条件下,pH值为9时发光最佳,并且由于这种酶对热具有异常的抗性,当使用部分纯化的酶时,在70℃以上的温度下会出现可见发光。最纯制剂在23℃时的比活性为1.75×10¹⁵光子·秒⁻¹·毫克⁻¹。在pH值为8.7时,天然荧光素酶的分子量约为130000,显然由4个31000的单体组成;在较低pH值下,天然荧光素酶倾向于聚合。在此酶作用下,腔肠素在22℃时的量子产率为0.34。发光反应后,用过的溶液无荧光,单独的荧光素酶溶液也是如此。当在¹⁸O₂存在下进行生物发光反应时,产物二氧化碳中含有超过50%的C¹⁸O¹⁶O,这支持了二氧杂环丁烷机制,但并未排除线性过氧化物机制。

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