Skopec Michele M, Malenke Jael R, Halpert James R, Denise Dearing M
Department of Zoology, Weber State University, Ogden, Utah 84408, USA.
Physiol Biochem Zool. 2013 Sep-Oct;86(5):593-601. doi: 10.1086/672212. Epub 2013 Aug 14.
An in vivo assay using the cytochrome P450 (P450) suicide inhibitor 1-aminobenzotriazole (ABT) and 24-h food intake was developed to determine the relative importance of P450s in two populations of Neotoma lepida with respect to biotransformation of plant secondary compounds in the animals' natural diets. The efficacy of ABT as a P450 inhibitor was first validated using hypnotic-state assays with and without pretreatment with ABT. Pretreatment with 100 mg/kg ABT by gavage increased hexobarbital sleep times 3-4-fold in both populations, showing effective inhibition of P450s in woodrats. Next, the Great Basin population was fed a terpene-rich juniper diet, and the Mojave population was fed a phenolic-rich creosote diet, with rabbit chow serving as the control diet in each group. Treatment with ABT inhibited food intake in the Great Basin population fed the juniper diet to a greater extent (35%) than the Great Basin population fed the control diet (19%) or the Mojave population fed the creosote diet (16%). The food intake of the Mojave population fed the control diet was not significantly inhibited by ABT. The findings suggest that the biotransformation of terpenes in juniper relies more heavily on P450s than that of phenolics in creosote. This assay provides an inexpensive and noninvasive method to explore the relative importance of P450s in the biotransformation strategies of wild mammalian herbivores.
利用细胞色素P450(P450)自杀抑制剂1-氨基苯并三唑(ABT)和24小时食物摄入量开展了一项体内试验,以确定在两种沙漠林鼠种群中,P450s对于动物天然饮食中植物次生化合物生物转化的相对重要性。ABT作为P450抑制剂的功效首先通过有无ABT预处理的催眠状态试验得到验证。通过灌胃给予100 mg/kg ABT预处理,两个种群的己巴比妥睡眠时间均增加了3至4倍,表明对林鼠体内的P450s有有效抑制作用。接下来,大盆地种群喂食富含萜烯的杜松饮食,莫哈韦种群喂食富含酚类的石炭酸灌木饮食,每组均以兔粮作为对照饮食。ABT处理对喂食杜松饮食的大盆地种群食物摄入量的抑制程度(35%)大于喂食对照饮食的大盆地种群(19%)或喂食石炭酸灌木饮食的莫哈韦种群(16%)。ABT对喂食对照饮食的莫哈韦种群的食物摄入量没有显著抑制作用。研究结果表明,杜松中萜烯的生物转化比石炭酸灌木中酚类的生物转化对P450s的依赖程度更高。该试验提供了一种廉价且非侵入性的方法,用于探究P450s在野生哺乳动物食草动物生物转化策略中的相对重要性。