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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Transport of aspartic acid, arginine, and tyrosine by the opportunistic protist Pneumocystis carinii
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Transport of aspartic acid, arginine, and tyrosine by the opportunistic protist Pneumocystis carinii

机译:机会性原生动物卡氏肺孢子虫运输天冬氨酸,精氨酸和酪氨酸

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摘要

In order to improve culture media and to discover potential drug targets, uptake of an acidic, a basic, and an aromatic amino acid were investigated. Current culture systems, axenic or co-cultivation with mammalian cells, do not provide either the quantity or quality of cells needed for biochemical studies of this organism. Insight into nutrient acquisition can be expected to lead to improved culture media and improved culture growth. Aspartic acid uptake was directly related to substrate concentration, Q_(10) was 1.10 at pH 7.4. Hence the organism acquired this acidic amino acid by simple diffusion. Uptake of the basic amino acid arginine and the aromatic amino acid tyrosine exhibited saturation kinetics consistent with carrier-mediated mechanisms. Kinetic parameters indicated two carriers (K_m = 22.8 ± 2.5 μM and K_m = 3.6 ± 0.3 mM) for arginine and a single carrier for tyrosine (K_m = 284 ± 23 μM). The effects of other L-amino acids showed that the tyrosine carrier was distinct from the arginine carriers. Tyrosine and arginine transport were independent of sodium and potassium ions, and did not appear to require energy from ATP or a proton motive force. Thus facilitated diffusion was identified as the mechanism of uptake. After 30 min of incubation, these amino acids were incorporated into total lipids and the sedimentable material following lipid extraction; more than 90% was in the cellular soluble fraction.
机译:为了改善培养基并发现潜在的药物靶标,研究了酸性,碱性和芳香族氨基酸的摄取。目前的培养系统,与哺乳动物细胞进行轴突培养或共培养,都无法提供对该生物进行生化研究所需的细胞数量或质量。对营养获取的深入了解有望导致改良的培养基和改良的培养基生长。天冬氨酸的摄取与底物浓度直接相关,在pH 7.4时Q_(10)为1.10。因此,生物体通过简单的扩散获得了这种酸性氨基酸。碱性氨基酸精氨酸和芳香族氨基酸酪氨酸的吸收表现出与载体介导的机理一致的饱和动力学。动力学参数表明精氨酸有两个载体(K_m = 22.8±2.5μM,K_m = 3.6±0.3 mM),酪氨酸有一个载体(K_m = 284±23μM)。其他L-氨基酸的作用表明酪氨酸载体不同于精氨酸载体。酪氨酸和精氨酸的转运与钠和钾离子无关,并且似乎不需要ATP或质子动力的能量。因此,促进扩散被认为是摄取的机制。孵育30分钟后,将这些氨基酸掺入总脂质和脂质提取后的可沉淀物质中。细胞可溶级分中超过90%。

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