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A full-stack miniprotein discovery engine that accelerates creation.

We've built a full-stack miniprotein discovery engine that dramatically accelerates how new binders, scaffolds, and functional proteins are created. Instead of waiting months for traditional protein engineering cycles, our platform moves from library → screening → validated hits in just a few weeks.

A miniprotein bound through a lipid membrane, its blue and gold surfaces meeting at the binding interface.

Our system integrates five key capabilities into one seamless workflow

  1. Protein Library Design

    We start by generating large, intelligently designed sequence libraries based on structural insights and developability rules.

    A workstation modelling a miniprotein structure on screen.
  2. Yeast Display Screening

    Millions of miniprotein variants are displayed on the surface of yeast cells, enabling rapid testing of binding and performance.

    Miniprotein variants displayed across the surface of yeast cells.
  3. High-Throughput Cell Sorting

    Using FACS, we isolate the strongest performers—only the variants with the best affinity, specificity, or function move forward.

    A cell sorter splitting labelled cells into separate streams.
  4. Rapid Scale-Up of “Hits”

    Promising candidates are immediately produced and purified in small batches for deeper analysis.

    Bioreactors producing the selected miniprotein candidates.
  5. Full Characterization & Assays

    We evaluate stability, binding affinity, and functional activity to bring robustly validated miniprotein binders to the hands of scientific researchers.

    Analytical instruments characterizing a purified miniprotein.

By unifying robust protein libraries with high-throughput screening, our platform can evaluate 100M+ variants and surface superior candidates in a fraction of the time required by traditional partners.

This empowers partners with faster discovery cycles, deeper exploration of sequence space, and high-confidence research tools.

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