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婴儿利什曼原虫前鞭毛体体外生长和循环前期发育过程中柠檬酸循环关键酶活性

Citric-acid cycle key enzyme activities during in vitro growth and metacyclogenesis of Leishmania infantum promastigotes.

作者信息

Louassini M, Foulquié M, Benítez R, Adroher J

机构信息

Department of Parasitology, Faculty of Pharmacy, University of Granada, Spain.

出版信息

J Parasitol. 1999 Aug;85(4):595-602.

Abstract

The activities of 5 key regulatory enzymes in most energetic systems, namely citrate synthase (EC 4.1.3.7, CS), NADP-specific isocitrate dehydrogenase (EC 1.1.1.42, ICDH), succinate dehydrogenase (EC 1.3.99.1, SDH), L-malate dehydrogenase (EC 1.1.1.37, MDH), and decarboxylating malic enzyme (EC 1.1.1.40, ME), were measured during the growth and metacyclogenesis of a cutaneous (CL) and a visceral (VL) strain of Leishmania infantum. As occurs with other Leishmania species, infective promastigotes were present along all phases of growth, but their percentages were higher at the early stationary phase for VL and the end of the same phase for CL. High CS and SDH activities were detected in both strains, as compared with other trypanosomatids, bringing more evidence for an actively functional citric-acid cycle in L. infantum. Both strains showed higher levels of CS, ICDH, and MDH and lower SDH and ME activities when more metacyclic promastigotes were present, but in VL these changes paralleled an increase in glucose consumption, whereas in CL these changes coincided with an NH3 hyperproduction. This suggests that the energy metabolism during L. infantum growth and metacyclogenesis is affected by regulated enzymes that probably respond to changes in the culture medium in the levels of glucose and amino acids.

摘要

在婴儿利什曼原虫的皮肤(CL)株和内脏(VL)株的生长和后循环发育过程中,对大多数能量系统中的5种关键调节酶的活性进行了测定,这5种酶分别是柠檬酸合酶(EC 4.1.3.7,CS)、NADP特异性异柠檬酸脱氢酶(EC 1.1.1.42,ICDH)、琥珀酸脱氢酶(EC 1.3.99.1,SDH)、L-苹果酸脱氢酶(EC 1.1.1.37,MDH)和脱羧苹果酸酶(EC 1.1.1.40,ME)。与其他利什曼原虫物种一样,感染性前鞭毛体在生长的各个阶段均有出现,但在VL株的早期稳定期和CL株的同一阶段末期,其百分比更高。与其他锥虫相比,在这两种菌株中均检测到较高的CS和SDH活性,这为婴儿利什曼原虫中柠檬酸循环的活跃功能提供了更多证据。当存在更多后循环前鞭毛体时,两种菌株的CS、ICDH和MDH水平均较高,而SDH和ME活性较低,但在VL株中,这些变化与葡萄糖消耗的增加平行,而在CL株中,这些变化与NH3的过量产生同时发生。这表明婴儿利什曼原虫生长和后循环发育过程中的能量代谢受调节酶的影响,这些酶可能对培养基中葡萄糖和氨基酸水平的变化作出反应。

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