Banijamali Ali R, DeMatteo Vincent, Sumner Susan J
Metabolism Chemistry, Crop Protection R&D, Crompton Corp, Middlebury, CT 06749, USA.
Pest Manag Sci. 2003 Mar;59(3):331-8. doi: 10.1002/ps.641.
Our earlier research clearly revealed glutathione (GSH) conjugation as a major pathway for the metabolism of propargyl alcohol (2-propyn-1-ol) in rats and in mice. The identification of the metabolite 3,3-bis[(2-acetylamino-2-carboxyethyl)thio]-1-propanol (I) and its congeners represented the first example of multi-glutathione addition to a triple bond, and invoked further research to determine the mechanism for bis-conjugation. To determine whether GSH conjugated directly with propargyl alcohol or after oxidation of the latter to 2-propynal, urinary metabolites from rats administered deuterium-labeled propargyl alcohol were characterized. Following TLC separation and HPLC purification, mass spectrometry was used to show a single mass unit increase for metabolite I over that of the chemically synthesized standard. This result indicates that conjugation of propargyl alcohol with GSH to form the bis-conjugates occurred after initial oxidation to 2-propynal, a reaction that is analogous to a Michael addition.
我们早期的研究清楚地表明,谷胱甘肽(GSH)结合反应是大鼠和小鼠体内炔丙醇(2-丙炔-1-醇)代谢的主要途径。代谢物3,3-双[(2-乙酰氨基-2-羧乙基)硫基]-1-丙醇(I)及其同系物的鉴定代表了多谷胱甘肽加成到三键上的首个实例,并引发了进一步研究以确定双结合反应的机制。为了确定谷胱甘肽是直接与炔丙醇结合,还是在后者氧化为2-丙炔醛之后结合,对给予氘标记炔丙醇的大鼠的尿液代谢物进行了表征。经薄层色谱分离和高效液相色谱纯化后,使用质谱法显示代谢物I的质量单位比化学合成标准品增加了一个单位。该结果表明,炔丙醇与谷胱甘肽结合形成双结合物是在最初氧化为2-丙炔醛之后发生的,这一反应类似于迈克尔加成反应。