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Structural basis for the inhibition of firefly luciferase by a general anesthetic.

机译:全身麻醉剂抑制萤火虫荧光素酶的结构基础。

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摘要

The firefly luciferase enzyme from Photinus pyralis is probably the best-characterized model system for studying anesthetic-protein interactions. It binds a diverse range of general anesthetics over a large potency range, displays a sensitivity to anesthetics that is very similar to that found in animals, and has an anesthetic sensitivity that can be modulated by one of its substrates (ATP). In this paper we describe the properties of bromoform acting as a general anesthetic (in Rana temporaria tadpoles) and as an inhibitor of the firefly luciferase enzyme at high and low ATP concentrations. In addition, we describe the crystal structure of the low-ATP form of the luciferase enzyme in the presence of bromoform at 2.2-A resolution. These results provide a structural basis for understanding the anesthetic inhibition of the enzyme, as well as an explanation for the ATP modulation of its anesthetic sensitivity.
机译:来自Photinus pyralis的萤火虫荧光素酶可能是研究麻醉性蛋白质相互作用的最佳特征模型系统。它在很大的效力范围内结合了多种多样的全身麻醉剂,对麻醉剂的敏感性与在动物中发现的非常相似,并且麻醉敏感性可由其底物之一(ATP)调节。在本文中,我们描述了溴仿在高和低ATP浓度下作为普通麻醉剂(在林蛙ana中)和萤火虫荧光素酶抑制剂的特性。此外,我们描述了在2.2-A分辨率的溴仿存在下荧光素酶低ATP形式的晶体结构。这些结果为理解该酶的麻醉抑制作用提供了结构基础,并为ATP调节其麻醉敏感性提供了解释。

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