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首页> 外文期刊>Parasitology Research >Activity of key enzymes in glucose catabolism during the growth and metacyclogenesis of Leishmania infantum.
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Activity of key enzymes in glucose catabolism during the growth and metacyclogenesis of Leishmania infantum.

机译:婴儿利什曼原虫的生长和代谢形成过程中葡萄糖分解代谢中关键酶的活性。

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This paper follows the development in the activity of the key enzymes of glycolysis and dehydrogenases of the pentose phosphate shunt throughout the in vitro growth and metacyclogenesis of two human strains of Leishmania infantum - one visceral (VL) and the other cutaneous (CL) - together with changes in the glucose, ammonium, and proton concentrations in the culture medium. In the first stage, ammonium was generated and no glucose was consumed. Later on, all the glucose was consumed and, finally, ammonium was generated again. The ammonium concentration increased 16- and 21-fold in cultures of VL and CL strains, respectively. The activities of the glycosomal enzymes hexokinase and phosphofructokinase differed in each strain, always being higher in CL than in VL and increasing throughout the culture period in CL while decreasing in VL. This probably indicates a different capability to adapt to the culture medium conditions. The activities of the pentose phosphate shunt enzymes examined indicate that 6-phosphogluconate dehydrogenase is possibly a rate-limiting enzyme for this pathway. Pyruvate kinase is a cytosolic control enzyme of glycolysis in trypanosomatids, and its activity decreased throughout the growth and differentiation of both strains of L. infantum, as occurs in other trypanosomatids. It was also observed that glucose catabolism was more active in the cutaneous strain than in the visceral one.
机译:这篇论文追踪了戊糖磷酸分流器的糖酵解和脱氢酶关键酶的活性在两个人类婴儿利什曼原虫菌株-一个内脏(VL)和另一个皮肤(CL)-的体外生长和metacyclogenesis的发展随培养基中葡萄糖,铵和质子浓度的变化而变化。在第一阶段,产生了铵并且没有消耗葡萄糖。后来,所有的葡萄糖被消耗掉了,最后又产生了铵。在VL和CL菌株的培养物中,铵浓度分别增加了16倍和21倍。糖体酶己糖激酶和磷酸果糖激酶的活性在每个菌株中都不同,在CL中总是比VL中更高,并且在CL的整个培养期间都增加而在VL中却降低。这可能表明适应培养基条件的能力不同。所检测的戊糖磷酸旁路酶的活性表明6-磷酸葡糖酸脱氢酶可能是该途径的限速酶。丙酮酸激酶是锥虫的糖酵解的胞质控制酶,和其他锥虫一样,它的活性在两种乳酸杆菌的生长和分化过程中均降低。还观察到,与内脏器官相比,皮肤应变中的葡萄糖分解代谢更为活跃。

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