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配体与蛋白酪氨酸磷酸酶1B及其底物捕获突变体结合的热力学研究。

Thermodynamic study of ligand binding to protein-tyrosine phosphatase 1B and its substrate-trapping mutants.

作者信息

Zhang Y L, Yao Z J, Sarmiento M, Wu L, Burke T R, Zhang Z Y

机构信息

Department of Molecular Pharmacology, Albert Einstein College of Medicine, Bronx, New York 10461, USA.

出版信息

J Biol Chem. 2000 Nov 3;275(44):34205-12. doi: 10.1074/jbc.M004490200.

Abstract

The binding of several phosphonodifluoromethyl phenylalanine (F(2)Pmp)-containing peptides to protein-tyrosine phosphatase 1B (PTP1B) and its substrate-trapping mutants (C215S and D181A) has been studied using isothermal titration calorimetry. The binding of a high affinity ligand, Ac-Asp-Ala-Asp-Glu-F(2)Pmp-Leu-NH(2), to PTP1B (K(d) = 0.24 microm) is favored by both enthalpic and entropic contributions. Disruption of ionic interactions between the side chain of Arg-47 and the N-terminal acidic residues reduces the binding affinity primarily through the reduction of the TDeltaS term. The role of Arg-47 may be to maximize surface contact between PTP1B and the peptide, which contributes to high affinity binding. The active site Cys-215 --> Ser mutant PTP1B binds ligands with the same affinity as the wild-type enzyme. However, unlike wild-type PTP1B, peptide binding to C215S is predominantly driven by enthalpy change, which likely results from the elimination of the electrostatic repulsion between the thiolate anion and the phosphonate group. The increased enthalpic contribution is offset by reduction in the binding entropy, which may be the result of increased entropy of the unbound protein caused by this mutation. The general acid-deficient mutant D181A binds the peptide 5-fold tighter than the C215S mutant, consistent with the observation that the Asp to Ala mutant is a better "substrate-trapping" reagent than C215S. The increased binding affinity for D181A as compared with the wild-type PTP1B results primarily from an increase in the DeltaH of binding in the mutant, which may be related to decreased electrostatic repulsion between the phosphate moiety and PTP1B. These results have important implications for the design of high affinity PTP1B inhibitors.

摘要

利用等温滴定量热法研究了几种含膦二氟甲基苯丙氨酸(F(2)Pmp)的肽与蛋白酪氨酸磷酸酶1B(PTP1B)及其底物捕获突变体(C215S和D181A)的结合情况。高亲和力配体Ac-Asp-Ala-Asp-Glu-F(2)Pmp-Leu-NH(2)与PTP1B的结合(K(d)=0.24微摩尔)受到焓和熵的共同促进。精氨酸-47侧链与N端酸性残基之间离子相互作用的破坏主要通过TDeltaS项的降低来降低结合亲和力。精氨酸-47的作用可能是使PTP1B与肽之间的表面接触最大化,这有助于高亲和力结合。活性位点半胱氨酸-215→丝氨酸突变体PTP1B与配体的结合亲和力与野生型酶相同。然而,与野生型PTP1B不同,肽与C215S的结合主要由焓变驱动,这可能是由于硫醇阴离子与膦酸酯基团之间静电排斥的消除。增加的焓贡献被结合熵的降低所抵消,这可能是由于该突变导致未结合蛋白熵增加的结果。一般酸缺陷突变体D181A与肽的结合比C215S突变体紧密5倍,这与天冬氨酸到丙氨酸突变体是比C215S更好的“底物捕获”试剂的观察结果一致。与野生型PTP1B相比,D181A结合亲和力的增加主要源于突变体结合DeltaH的增加,这可能与磷酸部分与PTP1B之间静电排斥的降低有关。这些结果对高亲和力PTP1B抑制剂的设计具有重要意义。

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