Silber Ariel M, Tonelli Renata R, Martinelli Marcela, Colli Walter, Alves Maria Júlia M
Departamento de Bioquímica, Instituto de Química, Universidade de São Paulo, Caixa Postal 26077, São Paulo 05513-970, Brazil.
J Eukaryot Microbiol. 2002 Nov-Dec;49(6):441-6. doi: 10.1111/j.1550-7408.2002.tb00225.x.
L-proline is the main energy source in insect vector stages of most trypanosomatids, including Trypanosoma cruzi epimastigotes. This is the first biochemical description of two active proline transporter systems in T. cruzi. Uptake of this amino acid occurred by a low affinity system B and a high affinity system A. System B consistently appeared more specific than System A when excess competing amino acids were used in transport inhibition assays. Furthermore, the high affinity system is 70% inhibited by L-tryptophan, but the low affinity system is not. Both systems were found to be insensitive to the intracellular proline concentration and D-proline did not inhibit L-proline uptake showing that both systems are stereospecific. Both systems were Na+ and K+ independant but dependant on energy since ATP depletion impairs L-proline uptake. The combined action of carbonyl cyanide p-trifluoromethoxyphenyl hydrazone (FCCP) and oligomycin, and the dependence of activity on pH, further differentiated between the two systems leading to the conclusion that the high affinity system is a H+ gradient-dependant transporter whereas the low affinity system depends directly on ATP.
L-脯氨酸是大多数锥虫(包括克氏锥虫前鞭毛体)昆虫传播阶段的主要能量来源。这是对克氏锥虫中两种活性脯氨酸转运系统的首次生化描述。这种氨基酸的摄取通过低亲和力的B系统和高亲和力的A系统进行。当在转运抑制试验中使用过量的竞争性氨基酸时,B系统始终比A系统表现出更高的特异性。此外,高亲和力系统被L-色氨酸抑制70%,但低亲和力系统不受影响。发现这两个系统对细胞内脯氨酸浓度不敏感,D-脯氨酸也不抑制L-脯氨酸的摄取,表明这两个系统都是立体特异性的。这两个系统都不依赖Na+和K+,但依赖能量,因为ATP耗竭会损害L-脯氨酸的摄取。羰基氰化物对三氟甲氧基苯腙(FCCP)和寡霉素的联合作用,以及活性对pH的依赖性,进一步区分了这两个系统,得出结论:高亲和力系统是一种依赖H+梯度的转运体,而低亲和力系统直接依赖ATP。