Aman R A, Wang C C
Mol Biochem Parasitol. 1986 Apr;19(1):1-10. doi: 10.1016/0166-6851(86)90059-9.
Glycolytic enzymes in the purified glycosomes of Trypanosoma brucei brucei bloodstream forms were crosslinked to form a large protein complex by the bifunctional reagent dimethyl suberimidate [Aman, R.A., Kenyon, G.L. and Wang, C.C. (1985) J. Biol. Chem. 260, 6966-6973]. The crosslinked enzyme complex was found capable of catalyzing the chain reactions leading from glucose to the formation of alpha-glycerophosphate in the presence of ATP and NADH. To determine whether the crosslinked enzyme complex exhibits multiple substrate channelings, these chain reactions were investigated in the crosslinked complex as well as in a preparation of solubilized native glycosomes. When glucose was present at a relatively high concentration (20 mM), production of alpha-glycerophosphate by the crosslinked complex had no apparent lag phase whereas the free enzyme mixture did. However, when the glucose level was lower (0.5-5.0 mM) the difference between the two enzyme preparations disappeared, a lag phase was found in both cases. Formation of sugar phosphates from radiolabeled glucose, followed by high performance liquid chromatographic analysis, showed no significant difference in the diluting powers of exogenous, unlabeled sugar phosphates added to the crosslinked complex or free enzymes. Exogenous fructose 1,6-diphosphatase demonstrated the same effectiveness in disrupting the chain reactions catalyzed by the crosslinked complex and the free enzyme mixture. In situ generation of 2-deoxyglucose-6-phosphate from 2-deoxyglucose and ATP was observed in the crosslinked complex, but the product had no amplified inhibitory effect on the phosphoglucose isomerase activity in the complex. All results suggest an absence of substrate channelings among the glycolytic enzymes in the glycosome of T. b. brucei bloodstream form.
用双功能试剂亚胺二甲酯将布氏布氏锥虫血流形式纯化糖体中的糖酵解酶交联形成一个大的蛋白质复合物[Aman, R.A., Kenyon, G.L. 和 Wang, C.C. (1985) J. Biol. Chem. 260, 6966 - 6973]。发现交联的酶复合物能够在ATP和NADH存在的情况下催化从葡萄糖到α-甘油磷酸形成的连锁反应。为了确定交联的酶复合物是否表现出多种底物通道化现象,对交联复合物以及溶解的天然糖体制剂中的这些连锁反应进行了研究。当葡萄糖以相对较高的浓度(20 mM)存在时,交联复合物产生α-甘油磷酸没有明显的延迟期,而游离酶混合物有。然而,当葡萄糖水平较低(0.5 - 5.0 mM)时,两种酶制剂之间的差异消失,两种情况下都发现有延迟期。通过高效液相色谱分析对放射性标记葡萄糖形成的糖磷酸进行分析,结果表明添加到交联复合物或游离酶中的外源未标记糖磷酸的稀释能力没有显著差异。外源果糖1,6-二磷酸酶在破坏交联复合物和游离酶混合物催化的连锁反应方面表现出相同的效果。在交联复合物中观察到由2-脱氧葡萄糖和ATP原位生成2-脱氧葡萄糖-6-磷酸,但该产物对复合物中的磷酸葡萄糖异构酶活性没有增强的抑制作用。所有结果表明布氏布氏锥虫血流形式糖体中的糖酵解酶之间不存在底物通道化现象。