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Generative Deep Learning Design of Single-Domain Antibodies Against Venezuelan Equine Encephalitis Virus

Antibodies. 2019-01; 
Jinny L. Liu; Gabrielle C. Bayacal; Jerome Anthony E. Alvarez; Lisa C. Shriver-Lake; Ellen R. Goldman; Scott N. Dean
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Plasmid DNA Preparation were appended with a C-terminal tag (DDDDK) as a means of lowering the pI and assisting in solubility ( Table S2; Figure S3 ). Genes were ordered from Genscript in the pET22b periplasmic expression plasmid with a C-terminal His-tag. The sdAbs were grown and purified as previously described [ 3 , 20 ]. Briefly, Get A Quote

摘要

Background/Objectives: Venezuelan equine encephalitis virus (VEEV) represents a significant biothreat with no FDA-approved vaccine currently available, highlighting the need for alternative therapeutic strategies. Single-domain antibodies (sdAbs) present a potential alternative to conventional antibodies, due to their small size and ability to recognize cryptic epitopes. Methods: This research describes the development and preliminary evaluation of VEEV-binding sdAbs generated using a generative artificial intelligence (AI) platform. Using a dataset of known alphavirus-binding sdAbs, the AI model produced sequences with predicted affinity for the E2 glycoprotein of VEEV. These candidate sdAbs were expressed in ... More

关键词

generative AI, nanobodies, viruses