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Towards a generic prototyping approach for therapeutically-relevant peptides and proteins in a cell-free translation system

Nat Commun. 2022-01; 
Yue Wu, Zhenling Cui, Yen-Hua Huang, Simon J de Veer, Andrey V Aralov, Zhong Guo, Shayli V Moradi, Alexandra O Hinton, Jennifer R Deuis, Shaodong Guo, Kai-En Chen, Brett M Collins, Irina Vetter, Volker Herzig, Alun Jones, Matthew A Cooper, Glenn F King, David J Craik, Kirill Alexandrov, Sergey Mureev
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DNA Sequencing … Heavy and light chain sequences of CS-17 were determined from sequencing of CS-17 murine hybridoma cell line PTA-8174 (ATCC) by Genscript. The resulting sequences were … Get A Quote

摘要

Advances in peptide and protein therapeutics increased the need for rapid and cost-effective polypeptide prototyping. While in vitro translation systems are well suited for fast and multiplexed polypeptide prototyping, they suffer from misfolding, aggregation and disulfide-bond scrambling of the translated products. Here we propose that efficient folding of in vitro produced disulfide-rich peptides and proteins can be achieved if performed in an aggregation-free and thermodynamically controlled folding environment. To this end, we modify an E. coli-based in vitro translation system to allow co-translational capture of translated products by affinity matrix. This process reduces protein aggregation and enables p... More

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