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Anesthetic inhibition of firefly luciferase, a protein model for general anesthesia, does not exhibit pressure reversal.

机译:萤火虫荧光素酶(一种用于全身麻醉的蛋白质模型)的麻醉抑制作用不会逆转压力。

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摘要

The surprising observation that pressures of the order of 150 atmospheres can restore consciousness to an anesthetized animal has long been central to theories of the molecular mechanisms underlying general anesthesia. We have constructed a high-pressure gas chamber to test for "pressure reversal" of the best available protein model of general anesthetic target sites: the pure enzyme firefly luciferase, which accounts extremely well for animal potencies (over a 100,000-fold range). We found no significant pressure reversal for a variety of anesthetics of differing size and polarity. It thus appears that either firefly luciferase is not an adequate model for general anesthetic target sites or that pressure and anesthetics act at different molecular sites in the central nervous system.
机译:令人惊奇的发现是,大约150个大气压的压力可以使麻醉动物恢复意识,这一直是全麻基础分子机制理论的中心。我们已经建造了一个高压气室,以测试一般麻醉目标部位中最佳的可用蛋白质模型:纯萤火虫萤光素荧光素酶的“压力逆转”作用,该酶对动物的药效非常重要(超过100,000倍)。我们发现,对于大小和极性不同的各种麻醉剂,没有明显的压力逆转。因此,似乎萤火虫荧光素酶不是全身麻醉目标部位的适当模型,或者压力和麻醉剂作用于中枢神经系统中不同的分子部位。

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