Institute of Veterinary, Animal and Biomedical Sciences, Massey University, Private Bag 11-222, Palmerston North, New Zealand.
Exp Parasitol. 2011 Feb;127(2):506-14. doi: 10.1016/j.exppara.2010.10.021. Epub 2010 Nov 3.
The ornithine urea cycle, polyamine synthesis, nitric oxide synthesis and metabolism of arginine to putrescine have been investigated in L3 and adult Haemonchus contortus and Teladorsagia circumcincta. Neither parasite had a detectable arginine deiminase/dihydrolase pathway nor a functional ornithine urea cycle. Nitric oxide synthase was present in central and peripheral nerves, but was not detected in whole parasite homogenates. Both arginase (E.C. 3.5.3.1) and agmatinase (E.C. 3.5.3.11) activities were present in both species. Arginase did not require added Mn(2+) and had an optimal pH of 8.5. Polyamine metabolism differed in the two species and from that in mammals. Ornithine decarboxylase (E.C. 4.1.1.17) was present in both parasites, but no arginine decarboxylase (E.C. 4.1.1.19) activity was detected in T. circumcincta. The flexibility of synthesis of putrescine in H. contortus may make this pathway less useful as a target for parasite control than in T. circumcincta, in which only the ornithine decarboxylase pathway was detected.
已研究了旋毛虫 L3 和成虫以及捻转血矛线虫的鸟氨酸尿素循环、多胺合成、一氧化氮合成以及精氨酸向腐胺的代谢。这两种寄生虫均没有可检测到的精氨酸脱氨酶/二氢酶途径,也没有功能正常的鸟氨酸尿素循环。在中枢和周围神经中存在一氧化氮合酶,但在整个寄生虫匀浆中未检测到。两种寄生虫都存在精氨酸酶(E.C. 3.5.3.1)和胍氨酸酶(E.C. 3.5.3.11)活性。精氨酸酶不需要添加 Mn(2+),最适 pH 值为 8.5。多胺代谢在两种寄生虫中存在差异,与哺乳动物中的多胺代谢也存在差异。两种寄生虫中均存在鸟氨酸脱羧酶(E.C. 4.1.1.17),但在捻转血矛线虫中未检测到精氨酸脱羧酶(E.C. 4.1.1.19)活性。旋毛虫合成腐胺的合成具有灵活性,这使得该途径作为寄生虫控制的靶点的有效性不如在捻转血矛线虫中,因为在捻转血矛线虫中仅检测到鸟氨酸脱羧酶途径。