| Literature DB >> 30735312 |
Marcel Schmidt1,2, Yen-Hua Huang3, Eduardo F Texeira de Oliveira4, Ana Toplak1, Hein J Wijma4, Dick B Janssen4, Jan H van Maarseveen2, David J Craik3, Timo Nuijens1.
Abstract
Disulfide-rich macrocyclic peptides-cyclotides, for example-represent a promising class of molecules with potential therapeutic use. Despite their potential their efficient synthesis at large scale still represents a major challenge. Here we report new chemoenzymatic strategies using peptide ligase variants-inter alia, omniligase-1-for the efficient and scalable one-pot cyclization and folding of the native cyclotides MCoTI-II, kalata B1 and variants thereof, as well as of the θ-defensin RTD-1. The synthesis of the kB1 variant T20K was successfully demonstrated at multi-gram scale. The existence of several ligation sites for each macrocycle makes this approach highly flexible and facilitates both the larger-scale manufacture and the engineering of bioactive, grafted cyclotide variants, therefore clearly offering a valuable and powerful extension of the existing toolbox of enzymes for peptide head-to-tail cyclization.Entities:
Keywords: chemoenzymatic peptide synthesis (CEPS); cyclotides; enzyme catalysis; macrocycles; omniligase-1
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Year: 2019 PMID: 30735312 DOI: 10.1002/cbic.201900033
Source DB: PubMed Journal: Chembiochem ISSN: 1439-4227 Impact factor: 3.164