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配体对脑己糖激酶中必需巯基反应性的影响。底物结合位点之间可能的相互作用。

Effect of ligands on the reactivity of essential sulfhydryls in brain hexokinase. Possible interaction between substrate binding sites.

作者信息

Redkar V D, Kenkare U W

出版信息

Biochemistry. 1975 Oct 21;14(21):4704-12. doi: 10.1021/bi00692a022.

Abstract

Inactivation of bovine brain mitochondrial hexokinase by 5,5'-dithiobis(2-nitrobenzoic acid) (DTNB), a sulfhydryl specific reagent, has been investigated. The study shows that the inactivation of the enzyme by DTNB proceeds by way of prior binding of the reagent to the enzyme and involves the reaction of 1 mol of DTNB with a mol of enzyme. At stoichiometric levels of DTNB, the inactivation of the enzyme is accompanied by the formation of a disulfide bond. But it is not clear whether the disulfide bond or the mixed disulfide intermediate formed prior to it causes inactivation. On the basis of considerable protection afforded by glucose against this inactivation it is tentatively concluded that the sulfhydryl residues involved in this inactivation are at the glucose binding site of the enzyme, although other possibilities are not ruled out. An analysis of effects of various substrates and inhibitors on the kinetics of inactivation and sulfhydryl modification by DTNB has led to the proposal that the binding of substrates to the enzyme is interdependent and that glucose and glucose 6-phosphate produce slow conformational changes in the enzyme. Protective effects by ligands have been employed to calculate their dissociation constant with respect to the enzyme. The data also indicate that glucose 6-phosphate and inorganic phosphate share the same locus on the enzyme as the gamma phosphate of ATP and that nucleotides ATP and ADP bind to the enzyme in the absence of Mg2+.

摘要

研究了巯基特异性试剂5,5'-二硫代双(2-硝基苯甲酸)(DTNB)对牛脑线粒体己糖激酶的失活作用。研究表明,DTNB对该酶的失活是通过试剂先与酶结合进行的,且涉及1摩尔DTNB与1摩尔酶的反应。在化学计量水平的DTNB下,酶的失活伴随着二硫键的形成。但尚不清楚是二硫键还是其之前形成的混合二硫键中间体导致了失活。基于葡萄糖对这种失活有显著的保护作用,初步得出结论,参与这种失活的巯基残基位于酶的葡萄糖结合位点,尽管不排除其他可能性。对各种底物和抑制剂对DTNB失活动力学和巯基修饰的影响进行分析后提出,底物与酶的结合是相互依赖的,葡萄糖和6-磷酸葡萄糖会使酶产生缓慢的构象变化。利用配体的保护作用来计算它们相对于酶的解离常数。数据还表明,6-磷酸葡萄糖和无机磷酸与ATP的γ-磷酸在酶上共享同一位点,并且在没有Mg2+的情况下,核苷酸ATP和ADP会与酶结合。

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