Morty R E, Authié E, Troeberg L, Lonsdale-Eccles J D, Coetzer T H
Department of Biochemistry, University of Natal, Scottsville, South Africa.
Mol Biochem Parasitol. 1999 Jul 30;102(1):145-55. doi: 10.1016/s0166-6851(99)00097-3.
Trypanosoma brucei contain a serine oligopeptidase (OP-Tb) that is released into (and remains active in) the blood of trypanosome-infected animals. Here a similar enzyme from Trypanosoma congolense is described. This oligopeptidase, called OP-Tc, was purified using three-phase partitioning, and ion-exchange and affinity chromatography. OP-Tc is inhibited by alkylating agents, by serine peptidase-specific inhibitors including 3,4-dichloroisocoumarin, 4-(2-aminoethyl)benzenesulfonylfluoride and diispropylfluoro-phosphate and by other peptidase inhibitors including leupeptin, antipain and peptidyl chloromethyl ketones. Reducing agents such as dithiothreitol enhanced activity as did heparin, spermine and spermidine. The enzyme has trypsin-like specificity since it cleaved fluorogenic peptides that have basic amino acid residues (Arg or Lys) in the P1 position. Potential substrates without a basic residue in P1 were not hydrolysed. Although OP-Tc has weak arginine aminopeptidase activity, the enzyme clearly preferred substrates that had amino acids in the P2 and P3 positions. Overall, OP-Tc appears to be less efficient than OP-Tb because it usually displayed lower k(cat)/Km values for the substrates tested. However, like OP-Tb, the best substrate for OP-Tc was Cbz-Arg-Arg-AMC (Km = 0.72 microM, k(cat) = 96 s(-1)). OP-Tc preference for amino acids in the P2 position was (Gly,Lys,Arg) > Phe > Leu > Pro. The results also suggest that the P3-binding site has hydrophobic characteristics. OP-Tc may not be a naturally immunodominant molecule because neither IgG nor IgM anti- OP-Tc antibodies were detected in the blood of experimentally infected cattle.
布氏锥虫含有一种丝氨酸寡肽酶(OP-Tb),该酶会释放到锥虫感染动物的血液中(并在其中保持活性)。本文描述了来自刚果锥虫的一种类似酶。这种寡肽酶称为OP-Tc,通过三相分配、离子交换和亲和色谱法进行纯化。OP-Tc受到烷基化剂、丝氨酸肽酶特异性抑制剂(包括3,4-二氯异香豆素、4-(2-氨基乙基)苯磺酰氟和二异丙基氟磷酸酯)以及其他肽酶抑制剂(包括亮抑酶肽、抑肽酶和肽基氯甲基酮)的抑制。二硫苏糖醇等还原剂以及肝素、精胺和亚精胺可增强其活性。该酶具有胰蛋白酶样特异性,因为它能切割在P1位置具有碱性氨基酸残基(精氨酸或赖氨酸)的荧光肽。在P1位置没有碱性残基的潜在底物不会被水解。虽然OP-Tc具有较弱的精氨酸氨肽酶活性,但该酶明显更倾向于在P2和P3位置含有氨基酸的底物。总体而言,OP-Tc似乎比OP-Tb效率更低,因为它对所测试底物的k(cat)/Km值通常较低。然而,与OP-Tb一样,OP-Tc的最佳底物是Cbz-Arg-Arg-AMC(Km = 0.72 microM,k(cat) = 96 s(-1))。OP-Tc对P2位置氨基酸的偏好顺序为(甘氨酸、赖氨酸、精氨酸)>苯丙氨酸>亮氨酸>脯氨酸。结果还表明,P3结合位点具有疏水特性。OP-Tc可能不是天然的免疫显性分子,因为在实验感染牛的血液中未检测到抗OP-Tc的IgG或IgM抗体。