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破坏抗体可变区/恒定区界面处的疏水斑块:改善工程化单链抗体片段在体内的折叠及物理特性

Disrupting the hydrophobic patches at the antibody variable/constant domain interface: improved in vivo folding and physical characterization of an engineered scFv fragment.

作者信息

Nieba L, Honegger A, Krebber C, Plückthun A

机构信息

Biochemisches Institut, Universität Zürich, Switzerland.

出版信息

Protein Eng. 1997 Apr;10(4):435-44. doi: 10.1093/protein/10.4.435.

Abstract

By constructing Fv and single-chain Fv (scFv) fragments of antibodies, the variable domains are taken out of their natural context in the Fab fragment, where they are associated with the constant domains of the light (CL) and heavy chain (CH1). As a consequence, all residues of the former variable/constant domain interface become solvent exposed. In an analysis of 30 non-redundant Fab structures it was found that at the former variable/constant domain interface of the Fv fragment the frequency of exposed hydrophobic residues is much higher than in the rest of the Fv fragment surface. We investigated the importance of these residues for different properties such as folding in vivo and in vitro, thermodynamic stability, solubility of the native protein and antigen affinity. The experimental model system was the scFv fragment of the anti-fluorescein antibody 4-4-20, of which only 2% is native when expressed in the periplasm of Escherichia coli. To improve its in vivo folding, a mutagenesis study of three newly exposed interfacial residues in various combinations was carried out. The replacement of one of the residues (V84D in VH) led to a 25-fold increase of the functional periplasmic expression yield of the scFv fragment of the antibody 4-4-20. With the purified scFv fragment it was shown that the thermodynamic stability and the antigen binding constant are not influenced by these mutations, but the rate of the thermally induced aggregation reaction is decreased. Only a minor effect on the solubility of the native protein was observed, demonstrating that the mutations prevent aggregation during folding and not of the native protein. Since the construction of all scFv fragments leads to the exposure of these residues at the former variable/constant domain interface, this strategy should be generally applicable for improving the in vivo folding of scFv fragments and, by analogy, also the in vivo folding of other engineered protein domains.

摘要

通过构建抗体的Fv片段和单链Fv(scFv)片段,可变结构域被从Fab片段中的天然环境中取出,在Fab片段中它们与轻链(CL)和重链(CH1)的恒定结构域相关联。结果,以前可变/恒定结构域界面的所有残基都暴露于溶剂中。在对30个非冗余Fab结构的分析中发现,在Fv片段的以前可变/恒定结构域界面处,暴露的疏水残基的频率远高于Fv片段表面的其他部分。我们研究了这些残基对于不同性质的重要性,例如体内和体外折叠、热力学稳定性、天然蛋白质的溶解度以及抗原亲和力。实验模型系统是抗荧光素抗体4-4-20的scFv片段,当在大肠杆菌周质中表达时,其天然形式仅占2%。为了改善其体内折叠,对三个新暴露的界面残基进行了各种组合的诱变研究。其中一个残基(VH中的V84D)的替换导致抗体4-4-20的scFv片段的功能性周质表达产量增加了25倍。通过纯化的scFv片段表明,这些突变不影响热力学稳定性和抗原结合常数,但热诱导聚集反应的速率降低。仅观察到对天然蛋白质溶解度的轻微影响,表明这些突变防止了折叠过程中的聚集,而不是天然蛋白质的聚集。由于所有scFv片段的构建都会导致这些残基在以前可变/恒定结构域界面处暴露,因此该策略通常应适用于改善scFv片段的体内折叠,并且类推地,也适用于改善其他工程化蛋白质结构域的体内折叠。

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