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5'-腺苷酸与牛肝糖原磷酸化酶a结合的热力学特征

Thermodynamic characterization of 5'-AMP binding to bovine liver glycogen phosphorylase a.

作者信息

García-Fuentes L, Cámara-Artigas A, López-Mayorga O, Barón C

机构信息

Departamento de Química Física, Bioquímica y Química Inorgánica, Facultad de Ciencias Experimentales, Universidad de Almería, Almería, Spain.

出版信息

J Biol Chem. 1996 Nov 1;271(44):27569-74. doi: 10.1074/jbc.271.44.27569.

Abstract

The binding of adenosine 5'-monophosphate to liver glycogen phosphorylase a (EC 2.4.1.1) has been studied by size exclusion high performance liquid chromatography and isothermal titration microcalorimetry at pH 6.9 over a temperature range of 25 to 35 degrees C. The results are compared with those of the binding of the same nucleotide to the muscle isozyme and to liver phosphorylase b. Calorimetric measurements in various buffer systems with different ionization heats suggest that protons are released during the binding of the nucleotide. The dimer of liver glycogen phosphorylase a has been shown to have two equal and independent sites for 5'-AMP, which would correspond to the activator sites identified in the muscle isozyme. The binding constants as well as the changes in Gibbs energy, enthalpy, and entropy per site for 5'-AMP binding were calculated at each temperature. The results show that the major contribution to the negative value of DeltaG0 stems from the value of DeltaH in the range of 25 to 35 degrees C. The enthalpy change of binding is strongly temperature-dependent, arising from a large negative DeltaCp of binding equal to -1.45 +/- 0.02 kJ K-1 (mol of 5'-AMP bound)-1, which suggests significant changes in the polar and apolar surfaces accessible to the solvent.

摘要

通过尺寸排阻高效液相色谱法和等温滴定量热法,在pH 6.9、25至35摄氏度的温度范围内,研究了5'-单磷酸腺苷与肝糖原磷酸化酶a(EC 2.4.1.1)的结合情况。将结果与相同核苷酸与肌肉同工酶以及肝磷酸化酶b的结合结果进行了比较。在具有不同电离热的各种缓冲系统中进行的量热测量表明,核苷酸结合过程中有质子释放。已证明肝糖原磷酸化酶a的二聚体具有两个相等且独立的5'-AMP结合位点,这与在肌肉同工酶中鉴定出的激活位点相对应。计算了每个温度下5'-AMP结合的结合常数以及每个位点的吉布斯自由能、焓和熵的变化。结果表明,ΔG0的负值主要源于25至35摄氏度范围内的ΔH值。结合的焓变强烈依赖于温度,这是由于结合的大负ΔCp等于-1.45±0.02 kJ K-1(每摩尔结合的5'-AMP),这表明溶剂可及的极性和非极性表面发生了显著变化。

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