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ATP-dependent ligases in trypanothione biosynthesis – kinetics of catalysis and inhibition by phosphinic acid pseudopeptides

机译:锥虫硫醇生物合成中依赖ATP的连接酶–次膦酸假肽催化和抑制的动力学

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摘要

Glutathionylspermidine is an intermediate formed in the biosynthesis of trypanothione, an essential metabolite in defence against chemical and oxidative stress in the Kinetoplastida. The kinetic mechanism for glutathionylspermidine synthetase (EC 6.3.1.8) from Crithidia fasciculata (CfGspS) obeys a rapid equilibrium random ter-ter model with kinetic constants KGSH = 609 μm, KSpd = 157 μm and KATP = 215 μm. Phosphonate and phosphinate analogues of glutathionylspermidine, previously shown to be potent inhibitors of GspS from Escherichia coli, are equally potent against CfGspS. The tetrahedral phosphonate acts as a simple ground state analogue of glutathione (GSH) (Ki ∼ 156 μm), whereas the phosphinate behaves as a stable mimic of the postulated unstable tetrahedral intermediate. Kinetic studies showed that the phosphinate behaves as a slow-binding bisubstrate inhibitor [competitive with respect to GSH and spermidine (Spd)] with rate constants k3 (on rate) = 6.98 × 104 m−1·s−1 and k4 (off rate) = 1.3 × 10−3 s−1, providing a dissociation constant Ki = 18.6 nm. The phosphinate analogue also inhibited recombinant trypanothione synthetase (EC 6.3.1.9) from C. fasciculata, Leishmania major, Trypanosoma cruzi and Trypanosoma brucei with Kiapp values 20–40-fold greater than that of CfGspS. This phosphinate analogue remains the most potent enzyme inhibitor identified to date, and represents a good starting point for drug discovery for trypanosomiasis and leishmaniasis.
机译:谷胱甘肽亚精胺是锥虫硫磷生物合成中形成的中间体,锥虫硫磷是防御运动质体化学和氧化应激的必需代谢产物。破囊壶蛾(CfGspS)的谷胱甘肽亚精氨酸合成酶(EC 6.3.1.8)的动力学机制遵循动力学常数KGSH = 609μm,KSpd = 157μm和KATP = 215μm的快速平衡随机三萜模型。以前显示是大肠杆菌GspS的有效抑制剂的谷胱甘肽亚精胺的膦酸酯和次膦酸酯类似物对CfGspS也同样有效。四面体膦酸酯可作为谷胱甘肽(GSH)(Ki〜156μm)的简单基态类似物,而次膦酸酯则可作为假定的不稳定四面体中间体的稳定模拟物。动力学研究表明,次膦酸盐可作为慢速结合的双底物抑制剂[相对于GSH和亚精胺(Spd)具有竞争性],速率常数k3(on rate)= 6.98×10 4 m -1 ·s -1 和k4(关闭率)= 1.3×10 -3 s -1 ,提供解离常数Ki = 18.6nm。次膦酸盐类似物还抑制了棒状线虫,大利什曼原虫,克鲁氏锥虫和布鲁氏锥虫的重组锥虫硫醇合成酶(EC 6.3.1.9),其Ki app 值比大20–40倍。 Cf GspS。该次膦酸酯类似物仍然是迄今为止鉴定出的最有效的酶抑制剂,并且代表了锥虫病和利什曼病的药物发现的良好起点。

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