Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
8295259 | Biochemical and Biophysical Research Communications | 2018 | 5 Pages |
Abstract
We constructed a system for expressing the Fab of the therapeutic human monoclonal antibody adalimumab at a yield of 20 mg/L in the methylotrophic yeast Pichia pastoris. To examine the contribution of interchain disulfide bonds to conformational stability, we prepared adalimumab Fab from which the interchain disulfide bond at the C-terminal region at both the CH1 and CL domains was deleted by substitution of Cys with Ala (FabÎSS). DSC measurements showed that the Tm values of FabÎSS were approximately 5 °C lower than those of wild-type Fab, suggesting that the interchain disulfide bond contributes to conformational thermostability. Using computer simulations, we designed a novel interchain disulfide bond outside the C-terminal region to increase the stability of FabÎSS. The resulting Fab (mutSS FabÎSS) had the mutations H:V177C and L:Q160C in FabÎSS, confirming the formation of the disulfide bond between CH1 and CL. The thermostability of mutSS FabÎSS was approximately 5 °C higher than that of FabÎSS. Therefore, the introduction of the designed interchain disulfide bond enhanced the thermostability of FabÎSS and mitigated the destabilization caused by partial reduction of the interchain disulfide bond at the C-terminal region, which occurs in site-specific modification such as PEGylation.
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Authors
Hitomi Nakamura, Naoko Oda-Ueda, Tadashi Ueda, Takatoshi Ohkuri,