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单链抗体片段(scFv)与转录因子GCN4亮氨酸拉链结构域反应的热力学和动力学

Thermodynamics and kinetics of the reaction of a single-chain antibody fragment (scFv) with the leucine zipper domain of transcription factor GCN4.

作者信息

Weber-Bornhauser S, Eggenberger J, Jelesarov I, Bernard A, Berger C, Bosshard H R

机构信息

Biochemisches Institut der Universität Zürich, Switzerland.

出版信息

Biochemistry. 1998 Sep 15;37(37):13011-20. doi: 10.1021/bi980874m.

Abstract

Single-chain Fv (scFv) fragments of antibodies have become important analytical and therapeutic tools in biology and medicine. The reaction of scFv fragments has not been well-characterized with respect to the energetics and kinetics of antigen binding. This paper describes the thermodynamic and kinetic behavior of the high-affinity scFv fragment SW1 directed against the dimeric leucine zipper domain of the yeast transcription factor GCN4. The scFv fragment was selected by the phage display technique from the immune repertoire of a mouse that had been immunized with the leucine zipper domain of GCN4. The scFv fragment was produced in high yield in Escherichia coli inclusion bodies and refolded from the denatured state. Differential scanning calorimetry showed that SW1 was stable up to about 50 degreesC, but the subsequent thermal denaturation was irreversible (Tm approximately 68 degreesC). The scFv fragment specifically recognized the dimeric leucine zipper conformation. Two scFv fragments bound to the GCN4 dimer to form the complex (scFv)2-GCN4. Because of its repetitive structure, the rod-shaped GCN4 leucine zipper may present two similar epitopes for the scFv fragment. Surprisingly, the binding reaction was highly cooperative, that is, the species (scFv)2-GCN4 dominated over scFv-GCN4 even in the presence of a large excess of the antigen GCN4. It is speculated that cooperativity resulted from direct interaction between the two GCN4-bound scFv fragments. At 25 degreesC, the average binding enthalpy for a scFv fragment was favorable (-61 kJ mol-1), the entropy change was unfavorable, and the change in heat capacity was -1.27 +/- 0.14 kJ mol-1 K-1. As a result of enthalpy-entropy compensation, the free binding energy was virtually independent of temperature in the physiological temperature range. Antigen binding in solution could be described by a single-exponential reaction with an apparent rate constant of 1 x 10(6) M-1 s-1. Binding followed in a biosensor with the dimeric GCN4 coupled to the surface of the metal oxide sensor chip was 20 times slower.

摘要

抗体的单链Fv(scFv)片段已成为生物学和医学中重要的分析和治疗工具。关于scFv片段与抗原结合的能量学和动力学,其反应尚未得到充分表征。本文描述了针对酵母转录因子GCN4的二聚亮氨酸拉链结构域的高亲和力scFv片段SW1的热力学和动力学行为。scFv片段通过噬菌体展示技术从小鼠的免疫文库中筛选获得,该小鼠已用GCN4的亮氨酸拉链结构域进行免疫。scFv片段在大肠杆菌包涵体中高产表达,并从变性状态复性。差示扫描量热法表明,SW1在约50℃以下是稳定的,但随后的热变性是不可逆的(熔点约为68℃)。scFv片段特异性识别二聚亮氨酸拉链构象。两个scFv片段与GCN4二聚体结合形成复合物(scFv)2 - GCN4。由于其重复结构,杆状的GCN4亮氨酸拉链可能为scFv片段呈现两个相似的表位。令人惊讶的是,结合反应具有高度协同性,即即使在存在大量过量抗原GCN4的情况下,(scFv)2 - GCN4物种也比scFv - GCN4占主导地位。推测协同性是由两个与GCN4结合的scFv片段之间的直接相互作用导致的。在25℃时,一个scFv片段的平均结合焓是有利的(-61 kJ mol-1),熵变是不利的,热容量变化为-1.27±0.14 kJ mol-1 K-1。由于焓 - 熵补偿,在生理温度范围内,自由结合能实际上与温度无关。溶液中的抗原结合可以用表观速率常数为1×10(6)M-1 s-1的单指数反应来描述。与偶联到金属氧化物传感器芯片表面的二聚体GCN4在生物传感器中的结合慢20倍。

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