Glockshuber R, Malia M, Pfitzinger I, Plückthun A
Genzentrum, Universität Müchen, Max-Planck-Institut für Biochemie, Martinsried, FRG.
Biochemistry. 1990 Feb 13;29(6):1362-7. doi: 10.1021/bi00458a002.
Fv-Fragments of antibodies may dissociate at low protein concentrations and are too unstable for many applications at physiological temperatures. To stabilize Fv-fragments against dissociation, we have tested and compared three different strategies on the Fv-fragment of the well-characterized phosphocholine binding antibody McPC603 expressed and secreted in Escherichia coli: chemical cross-linking of the variable domains, introduction of an intermolecular disulfide bond, and construction of a peptide linker to produce a "single-chain" Fv-fragment. All the linked fragments show hapten affinities nearly identical with that of the whole antibody independent of protein concentration and are significantly (up to 60-fold) stabilized against irreversible thermal denaturation. All genetically engineered linked Fv-fragments can be obtained in native conformation in E. coli. The reported strategies for generating Fv-fragments with improved physicochemical properties may extend their usefulness in biotechnology as well as in therapeutic and diagnostic applications.
抗体的Fv片段在低蛋白浓度下可能会解离,并且在生理温度下对于许多应用而言过于不稳定。为了稳定Fv片段以防解离,我们对在大肠杆菌中表达和分泌的、特性明确的磷酸胆碱结合抗体McPC603的Fv片段测试并比较了三种不同策略:可变结构域的化学交联、引入分子间二硫键以及构建肽接头以产生“单链”Fv片段。所有连接的片段都显示出与完整抗体几乎相同的半抗原亲和力,且与蛋白质浓度无关,并且在抗不可逆热变性方面得到了显著(高达60倍)的稳定。所有基因工程连接的Fv片段都可以在大肠杆菌中以天然构象获得。所报道的用于产生具有改善的物理化学性质的Fv片段的策略可能会扩展其在生物技术以及治疗和诊断应用中的用途。