METABOLISM OF PROSTAGLANDIN-F2-ALPHA IN ZELLWEGER SYNDROME - PEROXISOMAL BETA-OXIDATION IS OF MAJOR IMPORTANCE FOR INVIVO DEGRADATION OF PROSTAGLANDINS IN HUMANS

被引:42
作者
DICZFALUSY, U
KASE, BF
ALEXSON, SEH
BJORKHEM, I
机构
[1] NATL HOSP NORWAY,DEPT PEDIAT RES,N-0027 OSLO,NORWAY
[2] UNIV STOCKHOLM,WENNER GREN INST,DEPT METAB RES,S-11345 STOCKHOLM,SWEDEN
关键词
CEREBROHEPATORENAL SYNDROME; CHAIN SHORTENING; OMEGA-OXIDATION;
D O I
10.1172/JCI115401
中图分类号
R-3 [医学研究方法]; R3 [基础医学];
学科分类号
1001 ;
摘要
We have recently shown in vitro that the peroxisomal fraction of a rat liver homogenate has the highest capacity to beta-oxidize prostaglandins. In order to evaluate the relative importance of peroxisomes for this conversion also in vivo, we administered [H-3]prostaglandin F2-alpha to an infant suffering from Zellweger syndrome, a congenital disorder characterized by the absence of intact peroxisomes. As a control, labeled compound was administered to two healthy volunteers. Urine was collected, fractionated on a SEP-PAK C18 cartridge, and subjected to reversed-phase high-performance liquid chromatography. The Zellweger patient was found to excrete prostaglandin metabolites considerably less polar than those of the control subjects. The major urinary metabolite in the control subjects was practically absent in the urine from the Zellweger patient. The major urinary prostaglandin F2-alpha metabolite from the Zellweger patient was identified as an omega-oxidized C20-prostaglandin, 9,11-dihydroxy-15-oxoprost-5-ene-1,20-dioic acid. The major urinary prostaglandin F2-alpha metabolite from the control subjects had chromatographic properties of a tetranor (C-16) prostaglandin, in accordance with earlier published data. The present results, in combination with our previous in vitro data, indicate that peroxisomal beta-oxidation is of major importance for in vivo chain shortening of prostaglandins.
引用
收藏
页码:978 / 984
页数:7
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