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白三烯A4(LTA(4))与核苷及核苷酸的共价结合。

Covalent binding of LTA(4) to nucleosides and nucleotides.

作者信息

Reiber D C, Murphy R C

机构信息

Division of Cell Biology, National Jewish Medical and Research Center, 1400 Jackson Street, Denver, Colorado, 80206, USA.

出版信息

Arch Biochem Biophys. 2000 Jul 1;379(1):119-26. doi: 10.1006/abbi.2000.1851.

Abstract

Leukotriene A(4) (LTA(4)) is a chemically reactive conjugated triene epoxide that is formed by 5-lipoxygenase and is an intermediate in the formation of the biologically active eicosanoids leukotriene B(4) and leukotriene C(4). The present study was undertaken to determine whether or not LTA(4) could serve as an electrophilic species that nucleosides and nucleotides could attack, ultimately resulting in a covalent adduct. Electrospray ionization mass spectrometry and tandem mass spectrometry were used to study the covalent binding of LTA(4) with uridine, cytidine, adenosine, and guanosine. The reaction with guanosine was found to yield five major and at least six minor adduct species. Reversed phase HPLC and mass spectrometric data suggested that the guanosine attacked LTA(4) either at carbon-12 or carbon-6 with opening the epoxide at carbon-5 to yield a series of adducts characterized by the molecular anion M-H at m/z 600.3. Reactions of LTA(4) with mixtures of nucleosides and nucleotides revealed that guanine-containing nucleosides were the most reactive toward LTA(4). The facility of the reaction of guanine with LTA(4) raises the possibility that this intermediate of leukotriene biosynthesis formed on or near the cellular nuclear envelope may react with nucleosides and nucleotides present in RNA or DNA.

摘要

白三烯A(4)(LTA(4))是一种化学反应性共轭三烯环氧化物,由5-脂氧合酶形成,是生物活性类二十烷酸白三烯B(4)和白三烯C(4)形成过程中的中间体。本研究旨在确定LTA(4)是否可作为亲电物质,被核苷和核苷酸攻击,最终形成共价加合物。采用电喷雾电离质谱和串联质谱研究LTA(4)与尿苷、胞苷、腺苷和鸟苷的共价结合。发现与鸟苷的反应产生了五种主要加合物和至少六种次要加合物。反相高效液相色谱和质谱数据表明,鸟苷在碳-12或碳-6处攻击LTA(4),同时碳-5处的环氧化物开环,产生一系列以m/z 600.3处的分子阴离子M-H为特征的加合物。LTA(4)与核苷和核苷酸混合物的反应表明,含鸟嘌呤的核苷对LTA(4)反应性最强。鸟嘌呤与LTA(4)反应的便利性增加了这样一种可能性,即这种在细胞核膜上或其附近形成的白三烯生物合成中间体可能与RNA或DNA中存在的核苷和核苷酸发生反应。

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