Department of Biotechnology, Indian Institute of Technology Guwahati, Assam-781039, India.
Biol Chem. 2011 Dec;392(12):1113-22. doi: 10.1515/BC.2011.222.
Trypanothione synthetase, a validated drug target, synthesizes trypanothione from glutathione and spermidine. Here we report the gene cloning, expression, characterization and inhibition studies of trypanothione synthetase from Leishmania donovani (LdTryS). The purified recombinant LdTryS enzyme obeyed Michaelis-Menten kinetics. High substrate inhibition was observed with glutathione (K(m)=33.24 μm, k(cat)=1.3 s(-1), K(i)=866 μm). The enzyme shows simple hyperbolic kinetics with fixed glutathione concentration and with other substrates limiting K(m) values for Mg. ATP and spermidine of 14.2 μm and 139.6 μm, respectively. LdTryS was also screened for inhibitors. Tomatine, conessine, uvaol and betulin were identified as inhibitors of the enzyme and were tested for leishmanicidal activity. Finally, the effect of LdTryS inhibitors on redox homeostasis of the parasite gives a broader picture of their action against leishmaniasis.
硫醇嘌呤合成酶是一种经过验证的药物靶点,它能将谷胱甘肽和亚精胺合成硫醇嘌呤。本研究报道了来自利什曼原虫(LdTryS)的硫醇嘌呤合成酶的基因克隆、表达、特性和抑制研究。纯化的重组 LdTryS 酶遵循米氏动力学。与谷胱甘肽(K(m)=33.24 μm,k(cat)=1.3 s(-1),K(i)=866 μm)观察到高底物抑制。在固定谷胱甘肽浓度和其他底物限制 Mg.ATP 和亚精胺的 K(m)值的情况下,酶表现出简单的双曲线动力学,分别为 14.2 μm 和 139.6 μm。还对 LdTryS 进行了抑制剂筛选。番茄碱、康斯宁、羽扇豆醇和桦木醇被鉴定为该酶的抑制剂,并对其杀利什曼原虫活性进行了测试。最后,LdTryS 抑制剂对寄生虫氧化还原平衡的影响更全面地反映了它们对利什曼病的作用。