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糖原磷酸化酶b活性位点中官能团之间的动态相互作用。

Dynamic interaction between functional groups in the active site of glycogen phosphorylase b.

作者信息

Matkó J, Seres I, Papp S, Somogyi B

出版信息

Biochem Biophys Res Commun. 1984 Jul 31;122(2):649-55. doi: 10.1016/s0006-291x(84)80082-0.

Abstract

The quenching of coenzyme fluorescence in glycogen phosphorylase b is reinvestigated. Data with anionic quenchers show deviations from the original Stern-Volmer kinetics. A kinetic analysis based on measured lifetime data indicates a collisional quenching process, which is, however, not diffusion-controlled. It is proposed, that the quenching takes place primarily by enzyme-bound quencher species. The observed inhibition of the enzyme reaction by I- and IO-3 is consistent with this hypothesis. The inhibition pattern and spectral investigation refer to a true competition with the substrate, glucose-1-phosphate. So, this dynamic quenching can be regarded as an indicator of rapid conformational fluctuations which bring the two important active-site groups in contact. Effect of ligand binding on the quenching of coenzyme fluorescence should also be revaluated according to these results.

摘要

对糖原磷酸化酶b中辅酶荧光猝灭进行了重新研究。阴离子猝灭剂的数据显示与原始的斯特恩-沃尔默动力学存在偏差。基于测量的寿命数据进行的动力学分析表明存在碰撞猝灭过程,然而,这并非扩散控制的过程。有人提出,猝灭主要由酶结合的猝灭剂物种发生。观察到的I⁻和IO₃⁻对酶反应的抑制与此假设一致。抑制模式和光谱研究表明与底物葡萄糖-1-磷酸存在真正的竞争。因此,这种动态猝灭可被视为快速构象波动的指标,这种波动使两个重要的活性位点基团相互接触。根据这些结果,还应重新评估配体结合对辅酶荧光猝灭的影响。

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