Terjesen B F, Chadwick T D, Verreth J A, Rønnestad I, Wright P A
Department of Zoology, University of Bergen, Allègaten, 41, N-5007 Bergen, Norway.
J Exp Biol. 2001 Jun;204(Pt 12):2155-65. doi: 10.1242/jeb.204.12.2155.
Embryos and larvae of the African catfish Clarias gariepinus excrete significant quantities of urea. The present study focused on the potential urea-generating pathways during early development of this teleost; uricolysis, argininolysis and the ornithine-urea cycle (OUC). Uricase, allantoinase, allantoicase and ureidoglycollate lyase of the uricolytic pathway were expressed in all early life stages and in adult liver of C. gariepinus. Uricase activity increased in starved larvae compared with yolk-sac larvae. The key regulatory enzyme of the teleost OUC, carbamoyl phosphate synthetase III (CPSase III), was expressed predominantly in muscle of developing C. gariepinus larvae and showed negligible activity in the absence of its allosteric effector N-acetyl-L-glutamate. CPSase III and ornithine carbamoyl transferase activities increased in fed larvae compared with starved larvae. In contrast to the early developmental stages, adult C. gariepinus expressed only low and variable levels of CPSase III, suggesting that, under the experimental conditions employed, OUC expression is influenced by developmental stage in this species. The data indicate that early C. gariepinus life stages express the enzymes necessary for urea production by uricolysis, argininolysis and the OUC, and this may explain why urea tissue levels and urea excretion rates are substantial during the early development of this air-breathing teleost.
非洲鲶鱼(Clarias gariepinus)的胚胎和幼体排泄大量尿素。本研究聚焦于这种硬骨鱼早期发育过程中潜在的尿素生成途径;尿酸分解、精氨酸分解和鸟氨酸-尿素循环(OUC)。尿酸分解途径中的尿酸酶、尿囊素酶、尿囊酸酶和脲基乙醇酸裂解酶在非洲鲶鱼的所有早期生命阶段以及成体肝脏中均有表达。与卵黄囊幼体相比,饥饿幼体中的尿酸酶活性增加。硬骨鱼OUC的关键调节酶,氨甲酰磷酸合成酶III(CPSase III),主要在发育中的非洲鲶鱼幼体的肌肉中表达,并且在没有其变构效应物N-乙酰-L-谷氨酸的情况下显示出可忽略不计的活性。与饥饿幼体相比,摄食幼体中的CPSase III和鸟氨酸氨甲酰转移酶活性增加。与早期发育阶段不同,成年非洲鲶鱼仅表达低水平且变化不定的CPSase III,这表明在所采用的实验条件下,该物种中OUC的表达受发育阶段的影响。数据表明,非洲鲶鱼的早期生命阶段表达通过尿酸分解、精氨酸分解和OUC产生尿素所需的酶,这可能解释了为什么在这种呼吸空气的硬骨鱼的早期发育过程中尿素组织水平和尿素排泄率很高。