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糖原磷酸化酶b中的AMP相互作用位点。热力学分析。

AMP interaction sites in glycogen phosphorylase b. A thermodynamic analysis.

作者信息

Menendez M, Solis D, Usobiaga P, Laynez J

出版信息

Biophys Chem. 1985 Mar;21(3-4):249-60. doi: 10.1016/0301-4622(85)80012-0.

Abstract

The binding of AMP to activator site N and to inhibitor site I in glycogen phosphorylase b has been characterized by calorimetry, potentiometry and ultracentrifugation in the pH range 6.5-7.5 at 25 degrees C (mu = 0.1). Calorimetric titration data of phosphorylase b with adenosine 5'-phosphoramidate are also reported at pH 6.9 (T = 25 degrees C, mu = 0.1). Calorimetric curves have been analyzed on the basis of potentiometric and sedimentation velocity results to determine thermodynamic quantities for AMP binding to the enzyme. The comparison of calorimetric titration data of AMP and adenosine 5'-phosphoramidate at pH 6.9 supports the hypothesis previously suggested that the dianionic phosphate form of the nucleotide preferentially binds to the allosteric activator site. The thermodynamic parameters for AMP binding to site N are as follows: delta G0 = -22 kJ mol-1, delta H0 = -34 kJ mol-1 and delta S0 = -40 J mol-1 K-1. The binding of the nucleotide to site I was found to be strongly dependent on the pH. This behaviour may be explained in terms of coupled protonations of three groups having pKa values of 6.0, 6.0 and 6.1 in the unbound form and 7.0, 7.5 and 7.2 in the enzyme-nucleotide complex. The thermodynamic parameters for nucleotide binding to site I for the enzymatic form in which all the modified groups are completely deprotonated or protonated have been calculated to be: delta G0 = -7.7 kJ mol-1, delta H0 = -28 kJ mol-1 and delta S0 = -68 J mol-1 K-1 and delta G0 = -28 kJ mol-1, delta H0H = -10 kJ mol-1 and delta S0H = 61 J mol-1 K-1, respectively. These results suggest that attractive dispersion forces are of primary significance for AMP binding to activator site N, although electrostatic interactions act as a stabilizing factor in the nucleotide binding. The protonation states of those residues of which the pKa values are modified by AMP binding to site I highly influence the thermodynamic parameters for the nucleotide binding to this site.

摘要

在25℃(μ = 0.1)、pH范围为6.5 - 7.5的条件下,通过量热法、电位滴定法和超速离心法对糖原磷酸化酶b中AMP与激活位点N和抑制位点I的结合进行了表征。还报道了在pH 6.9(T = 25℃,μ = 0.1)时用5'-磷酸氨基腺苷对磷酸化酶b进行量热滴定的数据。已根据电位滴定和沉降速度结果分析量热曲线,以确定AMP与该酶结合的热力学量。在pH 6.9时AMP和5'-磷酸氨基腺苷量热滴定数据的比较支持了先前提出的假设,即核苷酸的二阴离子磷酸形式优先结合到变构激活位点。AMP与位点N结合的热力学参数如下:ΔG0 = -22 kJ mol-1,ΔH0 = -34 kJ mol-1,ΔS0 = -40 J mol-1 K-1。发现核苷酸与位点I的结合强烈依赖于pH。这种行为可以用三个基团的偶联质子化来解释,这三个基团在未结合形式下的pKa值分别为6.0、6.0和6.1,在酶 - 核苷酸复合物中的pKa值分别为7.0、7.5和7.2。已计算出对于所有修饰基团完全去质子化或质子化的酶形式,核苷酸与位点I结合的热力学参数分别为:ΔG0 = -7.7 kJ mol-1,ΔH0 = -28 kJ mol-1,ΔS0 = -68 J mol-1 K-1和ΔG0 = -28 kJ mol-1,ΔH0H = -10 kJ mol-1,ΔS0H = 61 J mol-1 K-1。这些结果表明,尽管静电相互作用在核苷酸结合中起稳定作用,但吸引力色散力对于AMP与激活位点N的结合具有主要意义。AMP与位点I结合导致pKa值改变的那些残基的质子化状态极大地影响了核苷酸与该位点结合的热力学参数。

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