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克氏锥虫中γ-氨基丁酸的摄取

The Uptake of GABA in Trypanosoma cruzi.

作者信息

Galvez Rojas Robert L, Ahn Il-Young, Suárez Mantilla Brian, Sant'Anna Celso, Pral Elizabeth Mieko Furusho, Silber Ariel Mariano

机构信息

Departamento de Parasitologia, Instituto de Ciências Biomédicas, Universidade de São Paulo, São Paulo, Brazil.

Instituto Nacional de Metrologia (INMetro), Rio de Janeiro, Brazil.

出版信息

J Eukaryot Microbiol. 2015 Sep-Oct;62(5):629-36. doi: 10.1111/jeu.12219. Epub 2015 Apr 25.

Abstract

Gamma aminobutyric acid (GABA) is widely known as a neurotransmitter and signal transduction molecule found in vertebrates, plants, and some protozoan organisms. However, the presence of GABA and its role in trypanosomatids is unknown. Here, we report the presence of intracellular GABA and the biochemical characterization of its uptake in Trypanosoma cruzi, the etiological agent of Chagas' disease. Kinetic parameters indicated that GABA is taken up by a single transport system in pathogenic and nonpathogenic forms. Temperature dependence assays showed a profile similar to glutamate transport, but the effect of extracellular cations Na(+) , K(+) , and H(+) on GABA uptake differed, suggesting a different uptake mechanism. In contrast to reports for other amino acid transporters in T. cruzi, GABA uptake was Na(+) dependent and increased with pH, with a maximum activity at pH 8.5. The sensitivity to oligomycin showed that GABA uptake is dependent on ATP synthesis. These data point to a secondary active Na(+) /GABA symporter energized by Na(+) -exporting ATPase. Finally, we show that GABA occurs in the parasite's cytoplasm under normal culture conditions, indicating that it is regularly taken up from the culture medium or synthesized through an still undescribed metabolic pathway.

摘要

γ-氨基丁酸(GABA)作为一种神经递质和信号转导分子广为人知,存在于脊椎动物、植物和一些原生动物中。然而,锥虫中GABA的存在及其作用尚不清楚。在此,我们报告了细胞内GABA的存在及其在恰加斯病的病原体克氏锥虫中摄取的生化特征。动力学参数表明,GABA通过单一转运系统以致病和非致病形式被摄取。温度依赖性试验显示出与谷氨酸转运相似的特征,但细胞外阳离子Na⁺、K⁺和H⁺对GABA摄取的影响不同,表明摄取机制不同。与克氏锥虫中其他氨基酸转运体的报道不同,GABA摄取依赖于Na⁺,并随pH值升高而增加,在pH 8.5时活性最高。对寡霉素的敏感性表明,GABA摄取依赖于ATP合成。这些数据表明存在一种由Na⁺输出ATP酶供能的次级主动Na⁺/GABA同向转运体。最后,我们表明在正常培养条件下,GABA存在于寄生虫的细胞质中,这表明它是从培养基中正常摄取或通过仍未描述的代谢途径合成的。

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