Shackleton C H L, Hughes B A, Lavery G G, Walker E A, Stewart P M
Institute of Biomedical Research, Division of Medical Sciences, University of Birmingham, Birmingham B15 2TT, UK.
Steroids. 2008 Oct;73(11):1066-76. doi: 10.1016/j.steroids.2008.04.004. Epub 2008 Apr 15.
Data are presented on the urinary corticosteroid metabolic profile of the mouse strain 129/svJ. Through the use of GC/MS we have characterized, or tentatively identified corticosterone (Kendall's compound B) metabolites of both the 11beta-hydroxy and 11-carbonyl (compound A) series in urine. Full mass spectra of the methyloxime-trimethylether derivatives of 15 metabolites are included in the paper as an aid to other researchers in the field. Metabolites ranged in polarity from tetrahydrocorticosterone (THB) to dihydroxy-corticosterone with dominance of highly polar steroids. We found that prior to excretion corticosterone can undergo oxidation at position 11beta, reduction at position 20 and A-ring reduction. Metabolites retaining the 3-oxo-4-ene structure can be hydroxylated at position 6beta- as well as at an unidentified position, probably 16alpha-. Saturated steroids can be hydroxylated at positions 1beta-, 6alpha-, 15alpha- and 16alpha. A pair of hydroxy-20-dihydro-corticosterone metabolites (OH-DHB) were the most important excretory products accounting for about 40% of the total. One metabolite of this type was identified as 6beta-hydroxy-DHB; the other, of similar quantitative importance was probably 16alpha-hydroxy-DHB. The ratio of metabolites of corticosterone (B) to those of 11-dehydro-corticosterone (A) was greater than 9:1, considerably higher than that for the equivalent "human" ratio of 1:1 for cortisol to cortisone metabolites. Results from this study allowed the evaluation of 11beta-hydroxysteroid dehydrogenase (11beta-HSD) activity in mice with deleted glucose-6-phosphate transporter (G6PT). These mice had attenuated back-conversion of A to B resulting in an increased ratio of A-metabolites to B-metabolites [Walker EA, Ahmed A, Lavery GG, Tomlinson JW, Kim SY, Cooper MS, Stewart PM, 11beta-Hydroxysteroid dehydrogenase type 1 regulation by intracellular glucose-6-phosphate, provides evidence for a novel link between glucose metabolism and HPA axis function. J Biol Chem 2007;282:27030-6]. We believe this study is currently the most comprehensive on the urinary steroid metabolic profile of the mouse. Quantitatively less steroid is excreted in urine than in feces by this species but urine analysis is more straightforward and the hepatic metabolites are less subject to microbial degradation than if feces was analyzed.
本文展示了小鼠品系129/svJ的尿皮质类固醇代谢谱。通过气相色谱/质谱联用(GC/MS)技术,我们对尿液中11β-羟基和11-羰基(化合物A)系列的皮质酮(肯德尔氏化合物B)代谢产物进行了表征或初步鉴定。本文包含了15种代谢产物的甲基肟-三甲醚衍生物的全质谱图,以帮助该领域的其他研究人员。代谢产物的极性范围从四氢皮质酮(THB)到二羟基皮质酮,其中高极性类固醇占主导。我们发现,在排泄之前,皮质酮可在11β位发生氧化、20位发生还原以及A环发生还原。保留3-氧代-4-烯结构的代谢产物可在6β位以及一个未确定的位置(可能是16α位)发生羟基化。饱和类固醇可在1β、6α、15α和16α位发生羟基化。一对羟基-20-二氢皮质酮代谢产物(OH-DHB)是最重要的排泄产物,约占总量的40%。其中一种这类代谢产物被鉴定为6β-羟基-DHB;另一种在数量上具有相似重要性的代谢产物可能是16α-羟基-DHB。皮质酮(B)与11-脱氢皮质酮(A)的代谢产物之比大于9:1,远高于皮质醇与可的松代谢产物的等效“人类”比值1:1。本研究结果使得对缺失葡萄糖-6-磷酸转运蛋白(G6PT)的小鼠体内11β-羟基类固醇脱氢酶(11β-HSD)活性进行评估成为可能。这些小鼠中A向B的逆向转化减弱,导致A代谢产物与B代谢产物的比值增加[沃克EA,艾哈迈德A,拉弗里GG,汤姆林森JW,金SY,库珀MS,斯图尔特PM,细胞内葡萄糖-6-磷酸对11β-羟基类固醇脱氢酶1型的调节,为葡萄糖代谢与HPA轴功能之间的新联系提供了证据。《生物化学杂志》2007年;282:27030 - 6]。我们认为本研究目前是关于小鼠尿类固醇代谢谱最为全面的研究。该物种尿液中排泄的类固醇在数量上比粪便中少,但尿液分析更直接,并且与分析粪便相比,肝代谢产物更不易受到微生物降解。