Ranomics
Protein engineering laboratory with multiple experimental workflows for binder discovery and optimization
Applications

What are you trying to achieve?

Protein engineering applications from de novo binder discovery and affinity maturation to enzyme engineering and antibody design

De novo binder discovery

Design novel protein binders for targets with no existing leads. Computational design generates candidates; display screening validates them. For novel targets, challenging epitopes, and programs where library approaches have failed.

AI Binder DesignYeast DisplayRFdiffusion / BindCraft / Boltzgen
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Affinity maturation

Improve the binding affinity of existing protein leads through targeted mutagenesis and iterative display selection. Map the full fitness landscape, identify beneficial mutations, and combine them for optimized variants.

Targeted MutagenesisDirected EvolutionYeast Display
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Enzyme engineering

Engineer enzyme activity, thermostability, substrate specificity, and expression yield. Computational assessment, directed evolution, and high-throughput screening for industrial, therapeutic, and diagnostic enzymes.

Directed EvolutionVariant ScreeningProtein Engineering
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Antibody & nanobody engineering

VHH nanobody design and optimization, scFv and Fab engineering, humanization, and developability screening. Display-based selection coupled to NGS characterization for full candidate profiles.

AI Binder DesignYeast DisplayMammalian Display
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Receptor targeting

Designing protein binders for GPCRs, ion channels, and receptor tyrosine kinases — targets where conventional library approaches struggle. De novo computational design excels for complex membrane targets.

AI Binder DesignMammalian DisplayEpitope Scout
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Don't see your application?

We work across a wide range of protein and cell engineering applications. Tell us about your target and goals — we'll scope a program.

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