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热力学分析揭示了水释放在抗人鸟苷酸环化酶C受体单克隆抗体表位识别中的作用。

Thermodynamic analyses reveal role of water release in epitope recognition by a monoclonal antibody against the human guanylyl cyclase C receptor.

作者信息

Swaminathan C P, Nandi A, Visweswariah S S, Surolia A

机构信息

Molecular Biophysics Unit, Indian Institute of Science, Bangalore 560 012, India.

出版信息

J Biol Chem. 1999 Oct 29;274(44):31272-8. doi: 10.1074/jbc.274.44.31272.

Abstract

The thermodynamics of a monoclonal antibody (mAb)-peptide interaction have been characterized by isothermal titration microcalorimetry. GCC:B10 mAb, generated against human guanylyl cyclase C, a membrane-associated receptor and a potential marker for metastatic colon cancer, recognizes the cognate peptide epitope HIPPENIFPLE and its two contiguous mimotopes, HIPPEN and ENIFPLE, specifically and reversibly. The exothermic binding reactions between 6.4 and 42 degrees C are driven by dominant favorable enthalpic contributions between 20 and 42 degrees C, with a large negative heat capacity (DeltaC(p)) of -421 +/- 27 cal mol(-1) K(-1). The unfavorable negative value of entropy (DeltaS(b)(0)) at 25 degrees C, an unusual feature among protein-protein interactions, becomes a positive one below an inversion temperature of 20.5 degrees C. Enthalpy-entropy compensation due to solvent reorganization accounts for an essentially unchanged free energy of interaction (DeltaDeltaG(b)(0) congruent with 0). The role of water molecules in the recognition process was tested by coupling an osmotic stress technique with isothermal titration microcalorimetry. The results provide direct and compelling evidence that GCC:B10 mAb recognizes the peptides HIPPENIFPLE, HIPPEN, and ENIFPLE differentially, with a concomitant release of variable and nonadditive numbers of water molecules (15, 7, and 3, respectively) from the vicinity of the binding site.

摘要

单克隆抗体(mAb)与肽相互作用的热力学已通过等温滴定量热法进行了表征。针对人鸟苷酸环化酶C(一种膜相关受体和转移性结肠癌的潜在标志物)产生的GCC:B10单克隆抗体,特异性且可逆地识别同源肽表位HIPPENIFPLE及其两个相邻的模拟表位HIPPEN和ENIFPLE。在6.4至42摄氏度之间的放热结合反应由20至42摄氏度之间占主导的有利焓贡献驱动,具有-421±27 cal mol⁻¹ K⁻¹的大负热容(ΔC(p))。在25摄氏度时熵(ΔS(b)(0))的不利负值是蛋白质 - 蛋白质相互作用中的一个不寻常特征,在20.5摄氏度的转变温度以下变为正值。由于溶剂重组导致的焓 - 熵补偿导致相互作用的自由能基本不变(ΔΔG(b)(0)≈0)。通过将渗透压应激技术与等温滴定量热法相结合,测试了水分子在识别过程中的作用。结果提供了直接且令人信服的证据,即GCC:B10单克隆抗体以不同方式识别肽HIPPENIFPLE、HIPPEN和ENIFPLE,同时从结合位点附近释放出数量可变且不可加和的水分子(分别为15、7和3个)。

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