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4,5,6,7 和 2,4,5,6,7 氘代吲哚-3-乙酸的合成及其在质谱分析中的应用。

Synthesis of 4,5,6,7 and 2,4,5,6,7 Deuterium-labeled Indole-3-Acetic Acid for Use in Mass Spectrometric Assays.

机构信息

Department of Botany and Plant Pathology, Michigan State University, East Lansing, Michigan 48824.

出版信息

Plant Physiol. 1980 Oct;66(4):775-81. doi: 10.1104/pp.66.4.775.

Abstract

Syntheses are described for tetra and pentadeutero indole-3-acetic acid (IAA) labeled in positions 4, 5, 6, 7 or 2, 4, 5, 6, 7 of the indole moiety. Polydeuterated IAA is proposed as an internal standard for gas chromatographic-mass spectrometric analysis of IAA by selected ion monitoring. Nanogram amounts of IAA may be assayed by monitoring the base peak of IAA at m/z = 130 (134 for d(4)-IAA) and the molecular ion of the methyl ester of IAA at 189 (193 for d(4)-IAA). Deuterium in positions 4, 5, 6, and 7 and, to only a slightly lesser extent, that in position 2 of IAA is retained during alkali treatment, thus permitting use of these compounds as internal standards for assay of IAA released by alkaline hydrolysis of ester and amide conjugates. The use of polydeutero internal standards separates the standards from the "isotope cluster" caused by the normal abundance of heavy isotopes and also permits use of reduced mass resolution, thus leading to a 10-fold increase in sensitivity.Tetradeutero IAA was used as an internal standard for determining free plus ester IAA in alkaline hydrolysates of Zea mays, and showed exact agreement between estimates based on the molecular ion of the methyl ester and those based upon base peak. Application of the method to measuring free IAA in the upper and lower halves of geotropically stimulated Zea shoots showed 61 +/- 4% of the free IAA to be on the lower side.

摘要

描述了四氘和十五氘吲哚-3-乙酸(IAA)在吲哚部分的 4、5、6、7 位或 2、4、5、6、7 位标记的合成。多氘代 IAA 被提议作为 IAA 的气相色谱-质谱分析的内标,通过选择离子监测。通过监测 IAA 的基峰 m/z = 130(d(4)-IAA 为 134)和 IAA 的甲酯的分子离子 m/z = 189(d(4)-IAA 为 193),可以测定纳克级的 IAA。在碱处理过程中,IAA 的 4、5、6 和 7 位以及在一定程度上 2 位的氘被保留,因此可以将这些化合物用作通过酯和酰胺缀合物的碱性水解释放的 IAA 的测定的内标。多氘代内标的使用将标准品与由于重同位素的正常丰度而引起的“同位素簇”分开,并且还允许使用降低的质量分辨率,从而使灵敏度提高了 10 倍。十四氘代 IAA 被用作玉米碱性水解物中游离酯 IAA 的内标,并且基于甲酯的分子离子和基于基峰的估计之间完全一致。该方法应用于测量向地性刺激的玉米芽的上下部分中的游离 IAA,显示出 61 +/- 4%的游离 IAA 在较低侧。

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