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核糖核酸酶A及其与3'-胞嘧啶单磷酸复合物的电离行为的量热法和电位法表征

Calorimetric and potentiometric characterization of the ionization behavior of ribonuclease A and its complex with 3'-cytosine monophosphate.

作者信息

Flogel M, Biltonen R L

出版信息

Biochemistry. 1975 Jun 17;14(12):2603-9. doi: 10.1021/bi00683a007.

Abstract

The proton association behavior of ribonuclease A and its complex with 3'-cytosine monophosphate has been thermodynamically characterized in the pH range 4--8 at 25 degrees, mu = 0.05. Calorimetric and potentiometric titration data have been used to estimate the apparent pK values and enthalpy values for protonation of the four histidine residues of the protein, deltaHp. In the free enzyme the pK values were deduced to be 5.0, 5.8, 6.6, and 6.7 and deltaHp deduced to be -6.5, -6.5, -6.5, and -24 kcal/mol for residues 119, 12, 105, and 48, respectively. For the nucleotide-enzyme complex it was concluded that the apparent pK values of residues 119, 12, and 48 increased to an average value of about 7.2, the deltaHp values remaining constant for all histidine groups except 48. It was also concluded that only the dianionic phosphate form of the nucleotide inhibitor is bound to the enzyme in this pH range. These results are consistent with a thermodynamic model for the binding reaction in which inhibitor-enzyme association is coupled to the ionization of three imidazole residues (12, 119, and 48) and the interaction between the negative phosphate moiety of the inhibitor and the positively charged residues 12 and 119 is purely electrostatic. However, the "interaction" with residue 48 probably involves a conformational rearrangement of the macromolecule.

摘要

在25℃、μ = 0.05的条件下,已对核糖核酸酶A及其与3'-胞嘧啶单磷酸形成的复合物在pH值4 - 8范围内的质子缔合行为进行了热力学表征。量热滴定和电位滴定数据已用于估算该蛋白质四个组氨酸残基质子化的表观pK值和焓值(ΔHp)。在游离酶中,对于残基119、12、105和48,推导得出的pK值分别为5.0、5.8、6.6和6.7,推导得出的ΔHp分别为-6.5、-6.5、-6.5和-24 kcal/mol。对于核苷酸 - 酶复合物,得出的结论是,残基119、12和48的表观pK值增加到约7.2的平均值,除48外所有组氨酸基团的ΔHp值保持不变。还得出结论,在该pH范围内,只有核苷酸抑制剂的二阴离子磷酸根形式与酶结合。这些结果与结合反应的热力学模型一致,在该模型中,抑制剂 - 酶缔合与三个咪唑残基(12、119和48)的电离偶联,并且抑制剂的负磷酸基团与带正电的残基12和119之间的相互作用纯粹是静电作用。然而,与残基48的“相互作用”可能涉及大分子的构象重排。

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