Gutiérrez-Correa J, Krauth-Siegel R L, Stoppani A O
Bioenergetics Research Centre, School of Medicine, University of Buenos Aires, Paraguay, Argentina.
Rev Argent Microbiol. 2000 Jul-Sep;32(3):136-43.
Dihydrolipoamide dehydrogenase (LADH) from Trypanosoma cruzi, the causative agent of Chagas' disease, was inactivated by treatment with myeloperoxidase (MPO)-dependent systems. LADH lipoamide reductase and diaphorase activities decreased as a function of incubation time and composition of the MPO/H2O2/halide system, a transient increase preceding the loss of diaphorase activity. Iodide, bromide, thiocyanide and chloride were effective components of MPO/H2O2 or MPO/NADH systems. Catalase prevented LADH inactivation by the MPO/NADH/halide systems in agreement with H2O2 production by NADH-supplemented LADH. Thiol compounds (L-cysteine, N-acetylcysteine, penicillamine, N-(2-mercaptopropionylglycine) and Captopril prevented LADH inactivation by the MPO/H2O2/NaCl system and by NaOCl, thus supporting HOCl as agent of the MPO/H2O2/NaCl system. MPO/H2O2/NaNO2 and MPO/NADH/NaNO2 inactivated LADH, the reaction being prevented by MPO inhibitors and thiol compounds. T. cruzi LADH was affected by MPO-dependent systems like myocardial LADH, allowance being made for the variation of the diaphorase activity and the greater sensitivity of the T. cruzi enzyme to MPO/H2O2/halide systems.
克氏锥虫(恰加斯病的病原体)的二氢硫辛酰胺脱氢酶(LADH)经髓过氧化物酶(MPO)依赖性系统处理后会失活。LADH硫辛酰胺还原酶和转氢酶活性随孵育时间以及MPO/H₂O₂/卤化物系统的组成而降低,转氢酶活性丧失之前会有短暂升高。碘化物、溴化物、硫氰化物和氯化物是MPO/H₂O₂或MPO/NADH系统的有效成分。过氧化氢酶可防止MPO/NADH/卤化物系统使LADH失活,这与补充NADH的LADH产生H₂O₂的情况相符。硫醇化合物(L-半胱氨酸、N-乙酰半胱氨酸、青霉胺、N-(2-巯基丙酰基)甘氨酸和卡托普利)可防止MPO/H₂O₂/NaCl系统和次氯酸钠使LADH失活,从而支持次氯酸是MPO/H₂O₂/NaCl系统的作用剂。MPO/H₂O₂/亚硝酸钠和MPO/NADH/亚硝酸钠可使LADH失活,MPO抑制剂和硫醇化合物可阻止该反应。克氏锥虫LADH受MPO依赖性系统影响,类似于心肌LADH,同时考虑到转氢酶活性的变化以及克氏锥虫酶对MPO/H₂O₂/卤化物系统的更高敏感性。