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August 15, 2025Nature Biotechnology50 citationsOpen Access

Target sequence-conditioned design of peptide binders using masked language modeling

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TCTianlai ChenZQZachary QuinnMDMadeleine Dumas

Key Points

  • PepMLM achieved low perplexities that match or improve upon validated peptide-protein pairs, enhancing binder design.
  • The method enables targeted degradation of proteins related to conditions like Huntington's disease and live viral infections.
  • Using AlphaFold-based docking, we validated the performance of PepMLM-derived peptides through binding and degradation assays.
  • The approach allows the design of candidate binders for various targets without needing structural input, expanding therapeutic opportunities.

Abstract

The computational design of protein-based binders presents unique opportunities to access 'undruggable' targets, but effective binder design often relies on stable three-dimensional structures or structure-influenced latent spaces. Here we introduce PepMLM, a target sequence-conditioned designer of de novo linear peptide binders. Using a masking strategy that positions cognate peptide sequences at the C terminus of target protein sequences, PepMLM finetunes the ESM-2 protein language model to fully reconstruct the binder region, achieving low perplexities matching or improving upon validated peptide-protein sequence pairs. After successful in silico benchmarking with AlphaFold-based docking, we experimentally validate the efficacy of PepMLM through both binding and degradation assays. PepMLM-derived peptides demonstrate sequence-specific binding to cancer and reproductive targets, including NCAM1 and AMHR2, and enable targeted degradation of proteins across diverse disease contexts, from Huntington's disease to live viral infections. Altogether, PepMLM enables the design of candidate binders to any target protein, without requiring structural input, facilitating broad applications in therapeutic development.

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Cite This Study

Chen et al. (2025) studied this question.

synapsesocial.com/papers/68a365560a429f797332b352https://doi.org/10.1038/s41587-025-02761-2
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