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Updated: Jan 6, 2026

Synthesis of a Water-soluble Metal–Organic Complex Array
Published on: October 8, 2016
DNA-Templated Assembly of Metalloprotein Mimics with Hydrolytic Activity
Fangzhou Zhao1, Ziyi Sun1, Hanadi F Sleiman1
1Department of Chemistry, McGill University, 801 Sherbrooke Street. W, Montreal, Quebec H3A0B8, Canada.
None:
Metalloproteins perform a wide range of biological and chemical functions, but elucidating their sequence-function relationships is difficult due to their complex folding pathways and various interactions involved. In this study, we use a covalently branched DNA trimer to scaffold the assembly of diverse peptide secondary structures into higher-order metalloprotein mimics. These structures exhibit zinc ion binding and hydrolytic activity, resembling the natural enzyme carbonic anhydrase (CA). By independently addressing each peptide fragment, we constructed a diverse library of protein mimics, enabling a systematic, high-throughput exploration of peptide structure-function relationships. This strategy expands the design potential beyond conventional coiled-coil motifs, offering a powerful methodology for constructing functional protein-based architectures.
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