Comparing domain interactions within antibody Fabs with kappa and lambda light chains

合作性 免疫球蛋白轻链 化学 合作约束 抗体 单体 免疫球蛋白Fab片段 结晶学 生物物理学 立体化学 结合位点 生物化学 互补决定区 生物 聚合物 遗传学 有机化学
作者
Raheleh Toughiri,Xiufeng Wu,Diana I. Ruiz,Flora Huang,John Crissman,M. Dickey,Karen Froning,Elaine M. Conner,Thomas P. Cujec,Stephen J. Demarest
出处
期刊:mAbs [Landes Bioscience]
卷期号:8 (7): 1276-1285 被引量:23
标识
DOI:10.1080/19420862.2016.1214785
摘要

IgG antibodies are multi-domain proteins with complex inter-domain interactions. Human IgG heavy chains (HCs) associate with light chains (LCs) of the κ or λ isotype to form mature antibodies capable of binding antigen. The HC/LC interaction involves 4 domains: VH and CH1 from the HC and VL and CL from the LC. Human Fabs with κ LCs have been well characterized for their unfolding behaviors and demonstrate a significant level of cooperativity and stabilization when all 4 domains are intact. Very little is known regarding the thermodynamic properties of human Fabs with λ LCs. Here, we dissect the domain contributions to Fab stability for both κ and λ LC-containing Fabs. We find the cooperativity of unfolding between the constant domains, CH1/Cλ, and variable domains, VH/Vλ, within λ LC-containing Fabs is significantly weaker than that of κ LC-containing Fabs. The data suggests there may not be an evolutionary necessity for strong variable/constant domain cooperativity within λ LC-containing Fabs. After investigating the biophysical properties of Fabs with mismatched variable and constant domain subunits (e.g., VH/Vκ paired with CH1/Cλ or T cell receptor Cα/Cβ), the major role of the constant domains for both κ- and λ-containing Fabs may be to reduce the hydrophobic exposure at the VH/VL interface. Even though Fabs with these non-native pairings were thermodynamically less stable, they secreted well from mammalian cells as well behaved monodisperse proteins, which was in contrast to what was observed with the VH/Vκ and VH/Vλ scFvs that secreted as a mixture of monomer and aggregates.
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