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植物中一氧化氮的检测方法:DAF 真的能检测一氧化氮吗?

Methods to Detect Nitric Oxide in Plants: Are DAFs Really Measuring NO?

作者信息

Ruemer Stefan, Krischke Markus, Fekete Agnes, Lesch Maria, Mueller Marin J, Kaiser Werner M

机构信息

Julius-von-Sachs Institute of Biosciences, University of Wuerzburg, Julius-von-Sachs-Platz 2, 97082, Wuerzburg, Germany.

出版信息

Methods Mol Biol. 2016;1424:57-68. doi: 10.1007/978-1-4939-3600-7_6.

Abstract

Nitric oxide, a gaseous radical molecule, appears involved in many reactions in all living organisms. Fluorescent dyes like DAF-2 and related compounds are still widely used to monitor NO production inside or outside cells, although doubts about their specificity have recently been raised. We present evidence that DAF dyes do not only react with nitric oxide but also with peroxidase enzyme and hydrogen peroxide. Both are secreted in the case of elicitation of tobacco suspension cells with cryptogein, with a fluorescence increase mimicking NO release from cells. However, HPLC separation shows that fluorescence outside cells does not at all originate from DAF-2T, the product of DAF-2 and NO, but from other yet unidentified compounds. Inside cells, other DAF molecules are formed but only a minor part is DAF-2T. The chemical nature of the novel DAF derivatives still needs to be determined.

摘要

一氧化氮是一种气态自由基分子,似乎参与了所有生物体内的许多反应。尽管最近有人对其特异性提出质疑,但像DAF-2这样的荧光染料及相关化合物仍被广泛用于监测细胞内外一氧化氮的产生。我们提供的证据表明,DAF染料不仅与一氧化氮反应,还与过氧化物酶和过氧化氢反应。在用隐地蛋白激发烟草悬浮细胞时,这两者都会分泌出来,荧光增强模拟了细胞中一氧化氮的释放。然而,高效液相色谱分离表明,细胞外的荧光根本不是来自DAF-2与一氧化氮的产物DAF-2T,而是来自其他尚未鉴定的化合物。在细胞内,会形成其他DAF分子,但只有一小部分是DAF-2T。新型DAF衍生物的化学性质仍有待确定。

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