Yulia Perevedentseva, Lukas Waurick, Dini Marlina, Gerda Techert, Yannic Müllers, Franziska Lederer, Heiko M Möller, Michael U Kumke, Ulrich Glebe, Björn Drobot
Journal: ChemSusChem 2026;19(16):e70900
PMID: 42584160
Lanthanides (Ln) are essential for renewable energy technologies, yet their extraction and recycling often cause severe environmental impacts. Bio-inspired ligands based on metal-binding protein motifs offer a promising alternative for selective and sustainable Ln recovery. This study investigates the lanthanide-binding properties of the EF-hand 4 (EF4) motif of calmodulin. The binding of various Ln3+ ions to EF4 was characterized using isothermal titration calorimetry, time-resolved laser fluorescence spectroscopy, nuclear magnetic resonance spectroscopy, and molecular dynamics simulations. EF4 exhibits generally high affinity toward Ln, with slightly varying binding constants across the Ln series. Thermodynamic, structural, and coordination effects associated with Ln binding were analyzed in detail. Compared to the EF-hand loop within the native protein, the isolated EF4 peptide shows significantly increased flexibility. Depending on experimental conditions, both 1:1 and 2:1 (Ln3+:peptide) complex stoichiometries were observed. Furthermore, immobilized EF4 was successfully applied for the extraction and recovery of Sm3+ from artificial aqueous solutions under laboratory conditions. Overall, the EF4 loop motif of calmodulin represents a promising biological ligand for the selective binding and recovery of Ln from aqueous systems.
© 2026 The Author(s). ChemSusChem published by Wiley‐VCH GmbH.
© Copyright 2026, Nutrition Evidence
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