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鸟氨酸转氨甲酰酶缺乏的稀毛(spf)突变小鼠肝脏和肾脏马尿酸盐合成系统的发育及诱导性

Development and inducibility of the hepatic and renal hippurate-synthesizing system in sparse-fur (spf) mutant mice with ornithine transcarbamylase deficiency.

作者信息

Qureshi I A, Lebel S, Letarte J

机构信息

Pediatric Research Center, Hôpital Sainte-Justine Université de Montréal, Quebec, Canada.

出版信息

Biochem Int. 1989 Sep;19(3):657-66.

PMID:2818615
Abstract

The development of the hepatic and renal hippurate-synthesizing system, as represented by the overall reaction of the benzoyl CoA: glycine N-acyltransferase (EC 2.3.1.13) was studied in 0, 4, 8, 13, 17, 21-day and 8-week old sparse-fur (spf) mutant mice with X-linked ornithine transcarbamylase (OTC) deficiency. The enzyme system in mutant males (spf/Y) showed a retarded development in both liver and kidney cortex, which was statistically significant between 13 and 21 days of age, as compared to normal males (+/Y). Hippurate synthesis in preparations from adult (8-week old) spf/Y mice was not significantly different than the normal. Daily intraperitoneal injections of sodium benzoate in increasing concentrations (125-375 mg/kg), given between 17 and 21 days, did not cause any induction in spf/Y or +/Y mice. However, intraperitoneal sodium phenobarbital (80 mg/kg) increased the specific and total activities of the hepatic enzyme system in normal +/Y mice significantly. spf/Y tolerated a dose of 40 mg/kg only, which resulted in no significant increase of hepatic enzyme activity. The results indicate that barbiturates may induce the hippurate-synthesizing system, whereas benzoate treatment has no effect on changing its developmental profile.

摘要

以苯甲酰辅酶A:甘氨酸N-酰基转移酶(EC 2.3.1.13)的整体反应为代表,研究了X连锁鸟氨酸转氨甲酰酶(OTC)缺乏的0、4、8、13、17、21日龄和8周龄稀毛(spf)突变小鼠肝脏和肾脏马尿酸合成系统的发育情况。突变雄性小鼠(spf/Y)的酶系统在肝脏和肾皮质中的发育均延迟,与正常雄性小鼠(+/Y)相比,在13至21日龄之间具有统计学意义。成年(8周龄)spf/Y小鼠制剂中的马尿酸合成与正常小鼠无显著差异。在17至21日龄期间,每天腹腔注射浓度递增的苯甲酸钠(125 - 375 mg/kg),对spf/Y或+/Y小鼠均未引起任何诱导作用。然而,腹腔注射苯巴比妥(80 mg/kg)可显著提高正常+/Y小鼠肝脏酶系统的比活性和总活性。spf/Y小鼠仅能耐受40 mg/kg的剂量,这导致肝脏酶活性无显著增加。结果表明,巴比妥类药物可能诱导马尿酸合成系统,而苯甲酸盐处理对改变其发育模式没有影响。

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