Calonge M, Cubría J C, Balaña-Fouce R, Ordóñez D
Dept. Fisiología, Farmacología y Toxicología de Castilla y León (INTOXCAL), Universidad de León, Spain.
Biol Chem Hoppe Seyler. 1996 Apr;377(4):233-8. doi: 10.1515/bchm3.1996.377.4.233.
Using the insect Trypanosomatid Crithidia fasciculata as a model parasite of mammalian pathogenic flagellates, i.e. Leishmania and Trypanosoma spp., we have studied the kinetic and regulatory characteristics of the polyamine uptake system. Putrescine transport was age-dependent with maximum expression values at the proliferative logarithmic phase. Putrescine transport in Crithidia fasciculata was energy-dependent and against a putrescine concentration gradient. The integrity of the membrane sulfhydryl groups was absolutely required for optimum transport rates. The specificity of this mechanism was studied in the presence of a series of different chain length aliphatic diamines, showing the high specificity for putrescine and the poor effect of this series at the highest concentration analyzed as well as the higher polyamines spermidine and spermine. Finally, the well-known inhibitor of polyamine biosynthesis, DFMO, led to an upward regulation of putrescine uptake correlating with the depletion of intracellular polyamine pool. In addition, the presence of high concentrations of putrescine in the culture medium produced a downward regulation of this system.
我们以昆虫锥虫利什曼原虫作为哺乳动物致病鞭毛虫(即利什曼原虫和锥虫属物种)的模型寄生虫,研究了多胺摄取系统的动力学和调节特性。腐胺转运具有年龄依赖性,在增殖对数期表达值最高。利什曼原虫中的腐胺转运依赖能量,且逆着腐胺浓度梯度进行。膜巯基的完整性是实现最佳转运速率所绝对必需的。在一系列不同链长的脂肪族二胺存在的情况下研究了该机制的特异性,结果表明其对腐胺具有高度特异性,在分析的最高浓度下该系列的影响较小,对多胺亚精胺和精胺的影响也较小。最后,著名的多胺生物合成抑制剂二氟甲基鸟氨酸(DFMO)导致腐胺摄取上调,这与细胞内多胺池的消耗相关。此外,培养基中高浓度腐胺的存在会导致该系统下调。