Škerlová Jana, Král Vlastimil, Fábry Milan, Sedláček Juraj, Veverka Václav, Rezáčová Pavlína
Institute of Molecular Genetics, ASCR, v.v.i., Vídeňská 1083, 14220 Prague 4, Czech Republic.
Institute of Organic Chemistry and Biochemistry, ASCR, v.v.i., Flemingovo nám. 2, 16610 Prague 6, Czech Republic.
Acta Crystallogr F Struct Biol Commun. 2014 Dec 1;70(Pt 12):1701-6. doi: 10.1107/S2053230X1402247X. Epub 2014 Nov 14.
Single-chain variable antibody fragments (scFvs) are molecules with immense therapeutic and diagnostic potential. Knowledge of their three-dimensional structure is important for understanding their antigen-binding mode as well as for protein-engineering approaches such as antibody humanization. A major obstacle to the crystallization of single-chain variable antibody fragments is their relatively poor homogeneity caused by spontaneous oligomerization. A new approach to optimization of the crystallizability of single-chain variable antibody fragments is demonstrated using a representative single-chain variable fragment derived from the anti-CD3 antibody MEM-57. A Thermofluor-based assay was utilized to screen for optimal conditions for antibody-fragment stability and homogeneity. Such an optimization of the protein storage buffer led to a significantly improved ability of the scFv MEM-57 to yield crystals.
单链可变抗体片段(scFv)是具有巨大治疗和诊断潜力的分子。了解它们的三维结构对于理解其抗原结合模式以及诸如抗体人源化等蛋白质工程方法非常重要。单链可变抗体片段结晶的一个主要障碍是其由于自发寡聚化导致的相对较差的均一性。使用源自抗CD3抗体MEM-57的代表性单链可变片段展示了一种优化单链可变抗体片段结晶性的新方法。基于热荧光的测定法用于筛选抗体片段稳定性和均一性的最佳条件。这种蛋白质储存缓冲液的优化导致scFv MEM-57产生晶体的能力显著提高。