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通过环移植改善单链Fv抗体片段的体内折叠和稳定性。

Improving in vivo folding and stability of a single-chain Fv antibody fragment by loop grafting.

作者信息

Jung S, Plückthun A

机构信息

Biochemisches Institut der Universität Zürich, Switzerland.

出版信息

Protein Eng. 1997 Aug;10(8):959-66. doi: 10.1093/protein/10.8.959.

Abstract

The complementary determining regions (CDRs) from the fluorescein-binding antibody 4-4-20, which yields almost no soluble protein in periplasmic expression in Escherichia coli, were transplanted to the framework of the humanized antibody 4D5. The resulting single-chain Fv fragment (scFv) 4D5Flu showed both a dramatic improvement in soluble expression, even at 37 degrees C, and an improved thermodynamic stability. Antigen affinity was maintained upon this engineering by paying attention to crucial framework-CDR contacts. This demonstrates that the use of superior frameworks is a robust strategy to improve the physical properties of scFv fragments. We also report that the grafted version was selected in phage display over several competing variants of the same antibody with identical binding constant but poorer folding or stability properties. The selection required four panning rounds and a temperature of 37 degrees C and we show that the underlying reason for this selection is a higher fraction of phages carrying functional scFv molecules.

摘要

在大肠杆菌周质表达中几乎不产生可溶性蛋白的荧光素结合抗体4-4-20的互补决定区(CDR),被移植到人源化抗体4D5的框架中。所得的单链Fv片段(scFv)4D5Flu不仅在37℃时可溶性表达有显著改善,而且热力学稳定性也有所提高。通过关注关键的框架 - CDR接触,在这种工程改造中抗原亲和力得以维持。这表明使用优良的框架是改善scFv片段物理性质的一种可靠策略。我们还报告称,在噬菌体展示中,与具有相同结合常数但折叠或稳定性较差的同一抗体的几个竞争变体相比,移植版本被选中。这种选择需要四轮淘选以及37℃的温度,并且我们表明这种选择的根本原因是携带功能性scFv分子的噬菌体比例更高。

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