Klinov S V, Chebotareva N A, Lissovskaya N P, Davidov D R, Kurganov B I
Biochim Biophys Acta. 1982 Dec 6;709(1):91-8. doi: 10.1016/0167-4838(82)90425-3.
Interaction of muscle glycogen phosphorylase b (EC 2.4.1.1) with glycogen was studied by sedimentation, stopped-flow and temperature-jump methods. The equilibrium enzyme concentration was determined by sedimentation in an analytical ultracentrifuge equipped with absorption optics and a photoelectric scanning system. The maximum adsorption capacity of pig liver glycogen is 3.64 mumol dimeric glycogen phosphorylase b per g glycogen, which corresponds to 20 dimeric enzyme molecules per average glycogen molecule of Mr 5.5 X 10(6). Microscopic dissociation constants were determined for the enzyme-glycogen complex within the temperature range from 12.7 to 30.0 degrees C. Enzyme-glycogen complexing is accompanied by increasing light scattering and its increment depends linearly on the concentration of the binding sites on a glycogen particle that are occupied by the enzyme. Complex formation and relaxation kinetics are in accordance with the proposed bimolecular reaction scheme. The monomolecular dissociation rate constant of the complex increases as the temperature increases from 12.7 to 30.0 degrees C, whereas the bimolecular rate constant changes slightly and is about 10(8) M-1 X S-1. These data point to the possibility of diffusional control of the complex formation.
采用沉降法、停流法和温度跃变法研究了肌肉糖原磷酸化酶b(EC 2.4.1.1)与糖原的相互作用。通过配备吸收光学器件和光电扫描系统的分析超速离心机沉降来测定平衡酶浓度。猪肝糖原的最大吸附容量为每克糖原3.64 μmol二聚体糖原磷酸化酶b,这相当于每Mr为5.5×10⁶的平均糖原分子有20个二聚体酶分子。在12.7至30.0℃的温度范围内测定了酶-糖原复合物的微观解离常数。酶与糖原的复合伴随着光散射增加,其增量与糖原颗粒上被酶占据的结合位点浓度呈线性关系。复合物的形成和弛豫动力学符合所提出的双分子反应方案。随着温度从12.7℃升高到30.0℃,复合物的单分子解离速率常数增加,而双分子速率常数变化轻微,约为10⁸ M⁻¹×s⁻¹。这些数据表明复合物形成可能受扩散控制。