Emergence of cooperative glucose-binding networks in adaptive peptide systems Journal Article


Authors: Kassem, S.; McPhee, S. A.; Berisha, N.; Ulijn, R. V.
Article Title: Emergence of cooperative glucose-binding networks in adaptive peptide systems
Abstract: Minimalistic peptide-based systems that bind sugars in water are challenging to design due to the weakness of interactions and required cooperative contributions from specific amino-acid side chains. Here, we used a bottom-up approach to create peptide-based adaptive glucose-binding networks by mixing glucose with selected sets of input dipeptides (up to 4) in the presence of an amidase to enable in situ reversible peptide elongation, forming mixtures of up to 16 dynamically interacting tetrapeptides. The choice of input dipeptides was based on amino-acid abundance in glucose-binding sites found in the protein data bank, with side chains that can support hydrogen bonding and CH-pi interactions. Tetrapeptide sequence amplification patterns, determined through LC-MS analysis, served as a readout for collective interactions and led to the identification of optimized binding networks. Systematic variation of dipeptide input revealed the emergence of two networks of non-covalent hydrogen bonding and CH-pi interactions that can co-exist, are cooperative and context-dependent. A cooperative binding mode was determined by studying the binding of the most amplified tetrapeptide (AWAD) with glucose in isolation. Overall, these results demonstrate that the bottom-up design of complex systems can recreate emergent behaviors driven by covalent and non-covalent self-organization that are not observed in reductionist designs and lead to the identification of system-level cooperative binding motifs.
Keywords: chemistry; molecular recognition; amplification; glycans; design; perspectives; dynamic combinatorial libraries; host-guest binding; carbohydrate-binding; synthetic receptors
Journal Title: Journal of the American Chemical Society
Volume: 145
Issue: 17
ISSN: 0002-7863
Publisher: American Chemical Society  
Date Published: 2023-05-03
Start Page: 9800
End Page: 9807
Language: English
ACCESSION: WOS:000975431100001
DOI: 10.1021/jacs.3c01620
PROVIDER: wos
PUBMED: 37075194
Notes: Article -- Source: Wos
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  1. Naxhije Berisha
    11 Berisha