首页> 外文期刊>Journal of molecular recognition: JMR >Interaction of epitope-related and -unrelated peptides with anti-p24 (HIV-1) monoclonal antibody CB4-1 and its Fab fragment.
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Interaction of epitope-related and -unrelated peptides with anti-p24 (HIV-1) monoclonal antibody CB4-1 and its Fab fragment.

机译:表位相关和无关肽与抗p24(HIV-1)单克隆抗体CB4-1及其Fab片段的相互作用。

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The binding of four epitope-related peptides and three library-derived, epitope-unrelated peptides of different lengths (10-14 amino acids) and sequence by anti-p24 (HIV-1) monoclonal antibody CB4-1 and its Fab fragment was studied by isothermal titration calorimetry. The binding constants K(A) at 25 degrees C vary between 5.1 x 10(7) M (-1) for the strongest and 1.4 x 10(5) M (-1) for the weakest binder. For each of the peptides complex formation is enthalpically driven and connected with unfavorable entropic contributions; however, the ratio of enthalpy and entropy contributions to DeltaG(0) differs markedly for the individual peptides. A plot of -DeltaH(0) vs -TDeltaS(0) shows a linear correlation of the data for a wide variety of experimental conditions as expected for a process with DeltaC(p) much larger than DeltaS(0). The dissimilarity of DeltaC(p) and DeltaS(0) also explains why DeltaH(0) and TDeltaS(0) show similar temperature dependences resulting in relatively small changes of DeltaG(0) withtemperature. The heat capacity changes DeltaC(p) upon antibody-peptide complex formation determined for three selected peptides vary only in a small range, indicating basic thermodynamic similarity despite different key residues interacting in the complexes. Furthermore, the comparison of van't Hoff and calorimetric enthalpies point to a non-two-state binding mechanism. Protonation effects were excluded by measurements in buffers of different ionization enthalpies. Differences in the solution conformation of the peptides as demonstrated by circular dichroic measurements do not explain different binding affinities of the peptides; specifically a high helix content in solution is not essential for high binding affinity despite the helical epitope conformation in the crystal structure of p24.
机译:研究了抗p24(HIV-1)单克隆抗体CB4-1及其Fab片段结合四种表位相关肽和三种不同长度(10-14个氨基酸)和序列的文库衍生,表位无关肽的结合通过等温滴定热法。 25摄氏度下的结合常数K(A)在最强的粘合剂的5.1 x 10(7)M(-1)和最弱的粘合剂的1.4 x 10(5)M(-1)之间变化。对于每种肽,复合物的形成都是由焓驱动的,并伴随着不利的熵的贡献。但是,对于单个肽,焓和熵对DeltaG(0)的贡献比率显着不同。 -DeltaH(0)与-TDeltaS(0)的关系图显示了与DeltaC(p)比DeltaS(0)大得多的过程所预期的各种实验条件下数据的线性相关性。 DeltaC(p)和DeltaS(0)的不同也解释了为什么DeltaH(0)和TDeltaS(0)显示相似的温度依赖性,从而导致DeltaG(0)随温度的变化相对较小。确定三种选定肽的抗体-肽复合物形成后的热容变化DeltaC(p)仅在很小的范围内变化,表明基本的热力学相似性,尽管复合物中有不同的关键残基相互作用。此外,范特霍夫和量热焓的比较指出了一种非两国结合机制。通过在不同电离焓的缓冲液中进行测量,排除了质子化效应。圆二色性测量表明,肽溶液构象的差异不能解释肽的不同结合亲和力。尽管p24晶体结构中具有螺旋表位构象,但溶液中的高螺旋含量对于高结合亲和力并不是必需的。

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