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单链抗体及单克隆抗体4-4-20的Fv衍生物的比较特性。结构域间相互作用与对荧光素配体的高亲和力之间的关系。

Comparative properties of the single chain antibody and Fv derivatives of mAb 4-4-20. Relationship between interdomain interactions and the high affinity for fluorescein ligand.

作者信息

Mallender W D, Carrero J, Voss E W

机构信息

Department of Microbiology, University of Illinois, Urbana, 61801, USA.

出版信息

J Biol Chem. 1996 Mar 8;271(10):5338-46. doi: 10.1074/jbc.271.10.5338.

Abstract

Recombinant Fv derivative of the high affinity murine anti-fluorescein monoclonal antibody 4-4-20 was constructed and expressed in high yields, relative to the single chain antibody (SCA) derivative (2 3-fold), in Escherichia coli. Both variable heavy (VH) and variable light (VL) domains, that accumulated as insoluble inclusion bodies, were isolated, denatured, mixed, refolded, and affinity-purified to yield active Fv 4-4-20. Affinity-purified Fv 4-4-20 showed identical ligand binding properties compared with the SCA construct, both were slightly lower than the affinities expressed by Fab or IgG 4-4-20. Proper protein folding was shown to be domain-independent by in vitro mixing of individually refolded variable domains to yield functional Fv protein. In solid phase and solution phase assays, Fv 4-4-20 closely approximated the SCA derivative in terms of both idiotype and metatype, confirming identical active site structures and conformations. The equilibrium dissociation constant (Kd) for the VL/VH association (1.43 x 10(-7) M), which was determined using the change in fluorescein spectral properties upon ligand binding, was relatively low considering the high affinity displayed by the Fv protein for fluorescein (Kd, 2.9 x 10(-10) M). Thus, domain-domain stability in the Fv and SCA 4-4-20 proteins cannot be the sole cause of reduced affinity (2-3-fold) for fluorescein as compared with the Fab or IgG form of 4-4-20. With their identical ligand binding and structural properties, the decreased SCA or Fv affinity for fluorescein must be an ultimate consequence of deletion of the CH1 and CL constant domains. Collectively, these results verify the importance of constant domain interactions in antibody variable domain structure-function analyses and future antibody engineering endeavors.

摘要

构建了高亲和力鼠抗荧光素单克隆抗体4-4-20的重组Fv衍生物,并相对于单链抗体(SCA)衍生物(2 - 3倍)在大肠杆菌中实现了高产表达。积累为不溶性包涵体的重链可变区(VH)和轻链可变区(VL)结构域均被分离、变性、混合、复性并亲和纯化,以产生活性Fv 4-4-20。亲和纯化的Fv 4-4-20与SCA构建体相比显示出相同的配体结合特性,两者均略低于Fab或IgG 4-4-20所表达的亲和力。通过体外混合单独复性的可变结构域以产生功能性Fv蛋白,表明正确的蛋白质折叠与结构域无关。在固相和溶液相分析中,Fv 4-4-20在独特型和同种型方面都与SCA衍生物非常接近,证实了相同的活性位点结构和构象。使用配体结合时荧光素光谱特性的变化测定的VL/VH缔合的平衡解离常数(Kd)为1.43×10⁻⁷ M,考虑到Fv蛋白对荧光素显示出的高亲和力(Kd,2.9×10⁻¹⁰ M),该值相对较低。因此,与4-4-20的Fab或IgG形式相比,Fv和SCA 4-4-20蛋白中结构域 - 结构域的稳定性不能成为对荧光素亲和力降低(2 - 3倍)的唯一原因。由于它们具有相同的配体结合和结构特性,SCA或Fv对荧光素亲和力的降低必定是CH1和CL恒定结构域缺失的最终结果。总体而言,这些结果证实了恒定结构域相互作用在抗体可变结构域结构 - 功能分析及未来抗体工程研究中的重要性。

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