化学
半胱氨酸
还原(数学)
组合化学
化学选择性
抗体
立体化学
化学还原
生物化学
生物结合
分子模型
作者
Manish Hudlikar,Jingzhou Wang,Xiang Yu,Catherine C. Going,M.G. Derebe,Manman Lu,Manoj B. Charati
摘要
design of chemoselective phosphine reductants. We propose a two-factor computational framework guided by phosphine accessibility to each disulfide site on the antibody surface and intrinsic reactivity, captured by the TS1 activation barrier, to explain selective versus nonselective behavior. This framework successfully rationalizes the activity of phosphine reductants toward engineered cysteine residues across two distinct engineered cysteine sites on the IgG1 backbone (S375C in the Fc and S168C in the Fab). Guided by these structure-function insights, we developed new reagents with improved chemoselectivity. Finally, by exploiting site- and reagent-dependent differences in accessibility and reactivity, we demonstrated the feasibility of a sequential strategy to prepare homogeneous dual-payload ADCs without complex linkers or additional antibody engineering. These findings provide broadly applicable guidance for phosphine selection and design to achieve chemoselective, site-specific conjugation.
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