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压力会对抗麻醉作用吗?萤火虫荧光素酶的高压停流研究及初始闪光剖析。

Does pressure antagonize anesthesia? High-pressure stopped-flow study of firefly luciferase and anatomy of initial flash.

作者信息

Ueda I, Minami H, Matsuki H, Inoue T

机构信息

Department of Anesthesia, Department of Veterans Affairs Medical Center and University of Utah School of Medicine, Salt Lake City, Utah 84148 USA.

出版信息

Biophys J. 1999 Jan;76(1 Pt 1):478-82. doi: 10.1016/S0006-3495(99)77215-2.

Abstract

The antagonizing effect of high pressure against anesthesia is well known. With purified firefly luciferase, however,. Biophys. J. 60:1309-1314) reported that high pressure did not affect the initial flash intensity. Firefly luciferase emits a burst of light when the substrates luciferin and ATP are added in the presence of O2. The light intensity decays rapidly and the weak light lasts for hours. The initial flash is a transient event and is not in a steady state. The steady state is represented by the slope of the linear part of the integral of the light output. The present study used a high-pressure stopped-flow system to compare the pressure effects on the initial flash intensity and the steady-state light intensity. The flash intensity did not change by the application of hydrostatic pressure in the presence or absence of chloroform or 1-octanol. In contrast, high pressure increased the steady-state light intensity. The application of 12 MPa pressure increased the steady-state light intensity of firefly luciferase inhibited by 5 mM chloroform or 0.7 mM 1-octanol by 19.7% and 18.8%, respectively. When analyzed by the rapid reaction kinetics of the transition state theory, the initial peak intensity represents the total amount of active enzyme and is unrelated to the reaction rate. Anesthetics inhibited the initial flash by unfolding the protein, thereby decreasing the concentration of the active enzyme. Pressure affected the steady-state light intensity by changing the reaction rates.

摘要

高压对麻醉的拮抗作用是众所周知的。然而,使用纯化的萤火虫荧光素酶(《生物物理学杂志》60:1309 - 1314)报道高压并不影响初始闪光强度。当在氧气存在的情况下加入底物荧光素和ATP时,萤火虫荧光素酶会发出一阵光。光强度迅速衰减,微弱的光会持续数小时。初始闪光是一个瞬态事件,并非处于稳态。稳态由光输出积分线性部分的斜率表示。本研究使用高压停流系统来比较压力对初始闪光强度和稳态光强度的影响。在存在或不存在氯仿或1 - 辛醇的情况下,静水压力的施加并未改变闪光强度。相反,高压增加了稳态光强度。施加12兆帕的压力分别使被5毫摩尔氯仿或0.7毫摩尔1 - 辛醇抑制的萤火虫荧光素酶的稳态光强度提高了19.7%和18.8%。当根据过渡态理论的快速反应动力学进行分析时,初始峰值强度代表活性酶的总量,与反应速率无关。麻醉剂通过使蛋白质展开来抑制初始闪光,从而降低活性酶的浓度。压力通过改变反应速率来影响稳态光强度。

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本文引用的文献

1
Hydrostatic pressure reversal of narcosis in tadpoles.蝌蚪麻醉的流体静压逆转
Science. 1950 Jul 21;112(2899):91-2. doi: 10.1126/science.112.2899.91-a.

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