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Automated optimisation of solubility and conformational stability of antibodies and proteins

Automated optimisation of solubility and conformational stability of antibodies and proteins

来源:bioRxiv_logobioRxiv
英文摘要

Biologics, such as antibodies and enzymes, are crucial in research, biotechnology, diagnostics, and therapeutics. Often, biologics with suitable functionality are discovered, but their development is impeded by developability issues. Stability and solubility are key biophysical traits underpinning developability potential, as they determine aggregation, correlate with production yield and poly-specificity, and are essential to access parenteral and oral delivery. While advances for the optimisation of individual traits have been made, the co-optimization of multiple traits remains highly problematic and time-consuming, as mutations that improve one property often negatively impact others. In this work, we introduce a fully automated computational strategy for the simultaneous optimisation of conformational stability and solubility, which we experimentally validate on six antibodies, including two approved therapeutics. Our results on 42 designs demonstrate that the computational procedure is highly effective at improving developability potential, while not affecting antigen-binding. We make the method available as a webserver at www-cohsoftware.ch.cam.ac.uk

Sormanni Pietro、Lorenzen Nikolai、Rosace Angelo、Bennett Anja、Oeller Marc、Mortensen Mie M、Sakhnini Laila I、Poulsen Christian

10.1101/2022.05.20.492798

生物科学研究方法、生物科学研究技术生物化学生物物理学分子生物学

Sormanni Pietro,Lorenzen Nikolai,Rosace Angelo,Bennett Anja,Oeller Marc,Mortensen Mie M,Sakhnini Laila I,Poulsen Christian.Automated optimisation of solubility and conformational stability of antibodies and proteins[EB/OL].(2025-03-28)[2025-08-02].https://www.biorxiv.org/content/10.1101/2022.05.20.492798.点此复制

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