Department of Chemistry and Biomedical Sciences, Karlstad University, S-651 88 Karlstad, Sweden.
J Immunol Methods. 2011 Feb 1;364(1-2):65-76. doi: 10.1016/j.jim.2010.11.003. Epub 2010 Nov 18.
Single-chain variable fragments (scFvs) are small monovalent recombinant antibody fragments that retain the specificity of their parent immunoglobulins. ScFvs are excellent building blocks for new and improved immunodiagnostic and therapeutic proteins. However, the monovalency and the rapid renal elimination of scFvs result in poor tumor accumulation and retention. Engineering divalent antibody fragments is an excellent way to address these shortcomings. In this study, covalent divalent single-chain variable fragments (sc(Fv)(2)s), were constructed from the monovalent anti-keratin 8 scFvs, TS1-218 and its mutant, HE1-Q. The scFvs and sc(Fv)(2)s were expressed in the methylotrophic yeast Pichia pastoris, utilizing the alpha-factor secretion signal (α-factor) for extracellular secretion. The immunoreactivity and specificity of the antibody fragments were analyzed with enzyme-linked immunosorbent assay (ELISA) and the uptake and retention of the (125)I labeled antibody fragments were evaluated using HeLa HEp-2 multicellular tumor spheroids (MCTSs). Analysis of the antibody fragments demonstrated that parts of the α-factor remained at the N-terminal of the antibody fragments. Despite incomplete processing of the α-factor, the antibody fragments were functional where the sc(Fv)(2)s gave a three-fold stronger signal in ELISA compared to their scFv counterparts and the mutant antibodies demonstrated a stronger signal than their initial wild types. In addition, the sc(Fv)(2)s DiTS1-218 and DiHE1-Q displayed an approximately two-fold higher uptake and were retained to a larger extent in the MCTS, demonstrating a 3.9 and 9.4-fold increase in half-life respectively compared to their corresponding scFvs. In conclusion, expression in P. pastoris improved the yield 20-fold and facilitated the purification of the antibody fragments. Furthermore, the sc(Fv)(2)s presented a higher functional affinity to K 8 both in ELISA and MCTS compared to the scFvs with DiHE1-Q being the best candidate for further studies.
单链可变片段(scFv)是保留亲本免疫球蛋白特异性的小单价重组抗体片段。scFv 是新型改良免疫诊断和治疗蛋白的优秀构建模块。然而,scFv 的单价和快速肾脏清除导致肿瘤积累和保留不佳。工程化二价抗体片段是解决这些缺点的绝佳方法。在这项研究中,从单价抗角蛋白 8 scFv TS1-218 和其突变体 HE1-Q 构建了共价二价单链可变片段(sc(Fv)(2)s)。scFv 和 sc(Fv)(2)s 在甲醇营养酵母毕赤酵母中表达,利用α-因子分泌信号(α-factor)进行细胞外分泌。利用酶联免疫吸附测定(ELISA)分析抗体片段的免疫反应性和特异性,并使用 HeLa HEp-2 多细胞肿瘤球体(MCTS)评估(125)I 标记抗体片段的摄取和保留。抗体片段分析表明,部分α-因子仍保留在抗体片段的 N 端。尽管α-因子的加工不完全,但抗体片段是功能性的,sc(Fv)(2)s 在 ELISA 中的信号比其 scFv 对应物强三倍,突变体抗体比其初始野生型显示出更强的信号。此外,sc(Fv)(2)s DiTS1-218 和 DiHE1-Q 在 MCTS 中的摄取量增加了约两倍,并且保留程度更大,半衰期分别比其相应的 scFv 增加了 3.9 倍和 9.4 倍。总之,在毕赤酵母中的表达将产量提高了 20 倍,并促进了抗体片段的纯化。此外,sc(Fv)(2)s 在 ELISA 和 MCTS 中对角蛋白 8 的功能亲和力均高于 scFv,其中 DiHE1-Q 是进一步研究的最佳候选物。