DOE OSTI · 2899469
Cyclic Peptides for Lanthanide Binding
Abstract
Lanthanide ions are difficult to separate from one another due to their similar chemical properties. The discovery of lanthanide-binding peptides and proteins in nature has led to an increased interest in the possibility of utilizing the strong binding of peptides to lanthanide ions for their separations; as such, there has been an effort to identify or design peptides with improved lanthanide binding and selectivity toward particular lanthanide ions. Here, in this study, we designed and characterized lanthanide-binding cyclic peptides (LBCPs) with molecular dynamics simulations, electronic structure calculations, and emission spectroscopy. Luminescent decay measurements were done to determine the number of water molecules coordinated to the Eu 3+ ion in Eu-LBCP complexes and compare to the predicted number of water molecules by computation to assess the lanthanide-binding affinity of LBCPs. Measured stability constants show binding of the LBCPs to the Eu 3+ ion with stronger than micromolar affinity. We were able to identify multiple peptides that selectively bind to middle lanthanides. We describe the structural basis of the lanthanide-binding selectivity trend with strongest binding to the middle lanthanides, followed by the heavier lanthanides, and finally to the lighter ions.
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Chiniforoush, Sina [Univ. of Nevada, Reno, NV (United States)], Fizer, Oksana [Univ. of Nevada, Reno, NV (United States)], de Bettencourt-Dias, Ana [Univ. of Nevada, Reno, NV (United States)] (ORCID:0000000151622393), Cantu, David C. [Univ. of Nevada, Reno, NV (United States)] (ORCID:0000000195845062). 2025-10-07. Cyclic Peptides for Lanthanide Binding. https://doi.org/10.1021/acs.jpcb.5c03650
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