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通过电喷雾电离质谱法鉴定含有谷胱甘肽与砷(III)、锑(III)、镉(II)、汞(II)、铊(I)、铅(II)或铋(III)的复合物。

Identification of complexes containing glutathione with As(III), Sb(III), Cd(II), Hg(II), Tl(I), Pb(II) or Bi(III) by electrospray ionization mass spectrometry.

作者信息

Burford Neil, Eelman Melanie D, Groom Katherine

机构信息

Department of Chemistry, Dalhousie University, Halifax, NS, Canada B3H 4J3.

出版信息

J Inorg Biochem. 2005 Oct;99(10):1992-7. doi: 10.1016/j.jinorgbio.2005.06.019.

DOI:10.1016/j.jinorgbio.2005.06.019
PMID:16084595
Abstract

Electrospray ionization mass spectrometry (ESI-MS) of mixtures containing glutathione (GSH) and nitrates, oxides or chlorides of the heavy metals, arsenic, antimony, cadmium, mercury, thallium, lead or bismuth allows for definitive identification of complexes in the gas phase. In the positive ion mode, spectra show prominent m/z peaks that are assigned to monocations of general formulae [E(GSH)-xH]+ (E = Cd, Hg, Tl, Pb, As, Sb or Bi; x = 0, 1 or 2), [E(GSH)2-xH]+ (E = Hg, As, Sb, or Bi; x = 1 or 2), [E(GSH)3-xH]+ (E = As, Sb or Bi; x = 2), [E2(GSH)-xH]+ (E = Tl or Pb; x = 1 or 3), [E2(GSH)2-xH]+ (E = Bi; x = 5), [E2(GSH)3-xH]+ (E = Bi; x = 5), and/or [E3(GSH)-xH]+ (E = Tl; x = 2). Spectra obtained in the negative ion mode give m/z peaks observed in assigned to monoanionic species that correspond to some of the monocationic species listed above with two protons removed. The results demonstrate the potential application of ESI-MS as a versatile and efficient approach to study toxic heavy metals in biological systems. In addition, the observations provide a foundation database to understand the chemistry of these heavy metals with bio-molecules.

摘要

对含有谷胱甘肽(GSH)以及重金属、砷、锑、镉、汞、铊、铅或铋的硝酸盐、氧化物或氯化物的混合物进行电喷雾电离质谱分析(ESI-MS),可在气相中明确鉴定复合物。在正离子模式下,光谱显示出突出的m/z峰,这些峰被指定为通式为[E(GSH)-xH]+(E = Cd、Hg、Tl、Pb、As、Sb或Bi;x = 0、1或2)、[E(GSH)2-xH]+(E = Hg、As、Sb或Bi;x = 1或2)、[E(GSH)3-xH]+(E = As、Sb或Bi;x = 2)、[E2(GSH)-xH]+(E = Tl或Pb;x = 1或3)、[E2(GSH)2-xH]+(E = Bi;x = 5)、[E2(GSH)3-xH]+(E = Bi;x = 5)和/或[E3(GSH)-xH]+(E = Tl;x = 2)的单阳离子。在负离子模式下获得的光谱给出了m/z峰,这些峰对应于上述一些单阳离子物种去除两个质子后的单阴离子物种。结果表明ESI-MS作为研究生物系统中有毒重金属的一种通用且高效的方法具有潜在应用价值。此外,这些观察结果为理解这些重金属与生物分子的化学反应提供了一个基础数据库。

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