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砷胆碱硫酸盐:寄生蘑菇蛇菰中主要砷形态的新型化合物。

Arsenocholine-O-sulfate: A novel compound as major arsenic species in the parasitic mushroom Tolypocladium ophioglossoides.

机构信息

Institute of Chemistry, University of Graz, Universitaetsplatz 1, 8010, Graz, Austria.

Nuclear Physics Institute of the Czech Academy of Sciences, Hlavní 130, 25068, Husinec-Řež, Czech Republic; Institute of Geology of the Czech Academy of Sciences, Rozvojová 269, 16500, Prague 6, Czech Republic.

出版信息

Chemosphere. 2021 Feb;265:128886. doi: 10.1016/j.chemosphere.2020.128886. Epub 2020 Nov 7.

Abstract

The As concentrations, along with 34 other elements, and the As speciation were investigated in wild-grown samples of the parasitic mushroom Tolypocladium ophioglossoides with inductively coupled plasma mass spectrometry (ICPMS) and high performance liquid chromatography coupled to ICPMS. The As concentrations were 0.070-3.44 mg kg dry mass. More remarkable was the As speciation, where up to 56% of the extracted As were found to be an unknown As species, which was marginally retained under anion- and also cation-exchange conditions. After testing several different chromatographic settings, the compound was finally isolated and identified as 2-(sulfoxyethyl) trimethylarsonium ion (in short: arsenocholine-O-sulfate) with high resolution mass spectrometry. The compound was synthesized and further quantified in all investigated samples via ion-pair chromatography coupled to ICPMS. In addition to the high abundance of arsenocholine-O-sulfate in T. ophioglossoides, small amounts of this As species were also detected in one sample of the host mushroom, Elaphomyces asperulus. In a sample of another parasitic mushroom, Ophiocordyceps sinensis, arsenocholine-O-sulfate could not be detected, but the main species was another unknown compound that was oxidized to inorganic As(V) with hydrogen peroxide. This is the first discovery of arsenocholine-O-sulfate in nature. It is possible that it is present in many other organisms, at least in low concentrations, and just has not been detected there yet because of its unusual chromatographic behavior. The existence of arsenocholine-O-sulfate brings up questions again about the biotransformation pathways of As in the environment and the specific behavior of fungi.

摘要

采用电感耦合等离子体质谱法(ICPMS)和高效液相色谱-电感耦合等离子体质谱联用技术(HPLC-ICPMS),对野生寄生蘑菇粗皮侧耳中 34 种其他元素以及砷的形态进行了研究。结果表明,砷浓度为 0.070-3.44mg/kg 干重。更值得注意的是砷的形态,其中高达 56%的提取砷被发现是一种未知的砷形态,这种砷形态在阴离子和阳离子交换条件下仅略有保留。经过多次不同色谱条件的测试,该化合物最终被分离并鉴定为 2-(磺氧基乙基)三甲砷离子(简称:砷胆碱-O-硫酸盐),并用高分辨质谱法进行了进一步验证。通过与 ICPMS 联用的离子对色谱法,在所有研究样本中均合成并定量了该化合物。除了粗皮侧耳中砷胆碱-O-硫酸盐含量较高外,在宿主蘑菇 Elaphomyces asperulus 的一个样本中也检测到了少量这种砷形态。在另一种寄生蘑菇蛹虫草的样本中,未检测到砷胆碱-O-硫酸盐,但检测到了另一种未知化合物,该化合物在过氧化氢作用下被氧化为无机砷(V)。这是砷胆碱-O-硫酸盐在自然界中的首次发现。它有可能存在于许多其他生物中,至少在低浓度下存在,只是由于其不寻常的色谱行为尚未在那里被检测到。砷胆碱-O-硫酸盐的存在再次引发了关于环境中砷的生物转化途径以及真菌特定行为的问题。

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