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ECTO-NOX催化的NADH氧化反应中振荡的光谱分析

Spectroscopic Analyses of Oscillations in ECTO-NOX-Catalyzed Oxidation of NADH.

作者信息

Morré D James, Morré Dorothy M

出版信息

Nonlinearity Biol Toxicol Med. 2003 Jul;1(3):345-62. doi: 10.1080/15401420390249916.

Abstract

Spectroscopic strategies that substantiate periodic oscillations in low rates of NADH oxidation exhibited by ECTO-NOX proteins at the animal and plant cell surface are described. Both continuous display and discontinuous rate determinations exhibit the oscillations but continuous displays lack sufficient resolution to discern details. A procedure is documented where rates are determined by least squares analyses of traces recorded over 1 min at intervals of 1.5 min. These traces recapitulate the continuous displays but offer an opportunity to reliably estimate changes in reaction rates over short time intervals not afforded by the continuous traces. Results from previously used rate determination over 5 min intervals are included for comparison. Turbidity is identified as the major contributor to losses in resolution. Even highly purified NOX preparations tend to aggregate to form turbid suspensions. With turbid suspensions, double beam or dual wavelength instrumentation where the sample is placed immediately adjacent to the photomultiplier tube are required to reduce losses in resolution from turbidity. Also required are high levels of synchronous ECTO-NOX function. Blue or red (plants) light, small molecules (i.e., melatonin) and autosynchrony alone or in combination were used to synchronize the oscillations. Special problems posed by preparations containing more than one ECTO-NOX form and where the different ECTO-NOX forms do not cross entrain are discussed.

摘要

本文描述了光谱学策略,这些策略证实了ECTO-NOX蛋白在动植物细胞表面表现出的低速率NADH氧化过程中的周期性振荡。连续显示和间断速率测定均显示出振荡,但连续显示缺乏足够的分辨率来辨别细节。记录了一种程序,通过对以1.5分钟为间隔在1分钟内记录的迹线进行最小二乘法分析来确定速率。这些迹线重现了连续显示,但提供了一个机会,可以可靠地估计短时间间隔内反应速率的变化,而这是连续迹线所无法提供的。还包括了以前以5分钟为间隔进行速率测定的结果以供比较。浊度被确定为分辨率损失的主要原因。即使是高度纯化的NOX制剂也容易聚集形成浑浊的悬浮液。对于浑浊的悬浮液,需要使用双光束或双波长仪器,将样品直接放置在光电倍增管旁边,以减少浊度导致的分辨率损失。还需要高水平的同步ECTO-NOX功能。单独或组合使用蓝光或红光(植物)、小分子(即褪黑素)和自同步来同步振荡。讨论了含有多种ECTO-NOX形式且不同ECTO-NOX形式不相互夹带的制剂所带来的特殊问题。

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