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March 21, 2026Nature Chemical Biology2 citationsOpen Access

A family portrait of lanmodulin selectivity for enhanced rare-earth separations

PDPatrick DiepCMCody Scott MadsenWCWonseok Choi

Key Points

  • The aim is to develop a high-throughput method for assessing the selectivity of lanmodulin toward rare earth elements.
  • Invented the SpyTag-Catcher Immobilization of Lanmodulin for Assaying Metal-Binding Selectivity (SpyCI-LAMBS) assay.
  • Utilized a 96-format workflow to study 621 lanmodulin orthologs for their selectivity toward 15 rare earth elements.
  • Conducted sequence-to-function analyses to identify distinct selectivity profiles.
  • Identified eight distinct selectivity profiles among lanmodulin orthologs.
  • Discovered over 200 lanmodulins with improved selectivity for La<sup>III</sup> compared to the prototypical lanmodulin.
  • Achieved up to 99.9 mol% purity and 83% yield in separating Pr<sup>III</sup> from La<sup>III</sup>.

Abstract

Proteins offer a molecular design space to create bespoke ligands for the separation of critical metals like rare earth elements (REs). However, data-intensive approaches to tune metalloprotein selectivity are constrained by the low-throughput nature of existing characterization methods. Here we invented an assay called 'SpyTag-Catcher Immobilization of Lanmodulin for Assaying Metal-Binding Selectivity' (SpyCI-LAMBS) to measure metalloprotein selectivity en masse. This 96-format workflow was used to study the selectivity of 621 lanmodulin (LanM) orthologs for 15 REs, revealing eight distinct selectivity profiles based on sequence-to-function analyses. We discovered >200 LanMs with stronger selectivity against low-value LaIII relative to the prototypical LanM. This includes a LanM that can perform a challenging one-stage separation of PrIII from LaIII with up to >99.9 mol% purity and 83% yield. SpyCI-LAMBS is a powerful tool that can rapidly collect high-fidelity selectivity data to inform metal ion separations and machine-learning-assisted metalloprotein design.

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Cite This Study

Diep et al. (2026) studied this question.

synapsesocial.com/papers/69be356f6e48c4981c673b4bhttps://doi.org/10.1038/s41589-026-02176-3
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