It’s important to lay strong foundations for successful drug discovery at this first stage of the process. Our integrated target identification and validation platform combines AI with expert insights, and rigorous lab validation to guide targets through robust evaluation, ready for hit discovery.
Validated, high-quality hits, delivered through integrated technologies and expert collaboration, give you a confident starting point for faster drug discovery.
Turning promising leads into clinical candidates with speed, precision, and the scientific expertise to generate high-quality data and deliver real patient impact.
Discover precise insights into brain neurochemistry with Sygnature Discovery's in vivo microdialysis and cOFM services. With over 20 years of expertise, we design bespoke studies that reveal how compounds modulate neurotransmitter systems in health and disease. Using UHPLC/HPLC with electrochemical detection or mass spectrometry, we deliver robust PK/PD data to support confident CNS decision making.
Delivering integrated, modality-agnostic drug discovery to tackle complex biology, accelerate development, and advance innovative therapies with confidence.
Advancing next-generation ADCs through payload-focused design, integrated expertise, and collaborative innovation to deliver safer, more selective therapies.
Driving biologics innovation through integrated design, structural biology, and multidisciplinary expertise to accelerate next-generation therapies from concept to clinic.
Combining deep therapeutic expertise with translational insight to design strategies, reduce risk, and accelerate discovery programs toward clinical success.
Accelerating oncology drug discovery through integrated expertise, innovative modalities, and translational insight to deliver candidates with real clinical impact.
Driving immunology and inflammation drug discovery through tailored assays, translational models, and integrated expertise for faster clinical success.
Advancing CNS drug discovery through integrated models, translational biomarkers, and multidisciplinary expertise to overcome complexity and accelerate therapeutic innovation.
Designing and advancing differentiated small-molecule therapies for obesity and diabetes through integrated expertise, mechanistic insight, and translational strategies.
Inobrodib, an exciting, first-in-class oral anti-cancer drug in clinical development by CellCentric, was collaboratively designed, synthesised and supported on its pre-clinical journey by an integrated project team at Sygnature Discovery. Inobrodib is now showing promising results in Phase I and II trials for multiple myeloma and other cancer types.
It’s important to lay strong foundations for successful drug discovery at this first stage of the process. Our integrated target identification and validation platform combines AI with expert insights, and rigorous lab validation to guide targets through robust evaluation, ready for hit discovery.
Validated, high-quality hits, delivered through integrated technologies and expert collaboration, give you a confident starting point for faster drug discovery.
Turning promising leads into clinical candidates with speed, precision, and the scientific expertise to generate high-quality data and deliver real patient impact.
Delivering integrated, modality-agnostic drug discovery to tackle complex biology, accelerate development, and advance innovative therapies with confidence.
Advancing next-generation ADCs through payload-focused design, integrated expertise, and collaborative innovation to deliver safer, more selective therapies.
Driving biologics innovation through integrated design, structural biology, and multidisciplinary expertise to accelerate next-generation therapies from concept to clinic.
Combining deep therapeutic expertise with translational insight to design strategies, reduce risk, and accelerate discovery programs toward clinical success.
Accelerating oncology drug discovery through integrated expertise, innovative modalities, and translational insight to deliver candidates with real clinical impact.
Driving immunology and inflammation drug discovery through tailored assays, translational models, and integrated expertise for faster clinical success.
Advancing CNS drug discovery through integrated models, translational biomarkers, and multidisciplinary expertise to overcome complexity and accelerate therapeutic innovation.
Designing and advancing differentiated small-molecule therapies for obesity and diabetes through integrated expertise, mechanistic insight, and translational strategies.
Inobrodib, an exciting, first-in-class oral anti-cancer drug in clinical development by CellCentric, was collaboratively designed, synthesised and supported on its pre-clinical journey by an integrated project team at Sygnature Discovery. Inobrodib is now showing promising results in Phase I and II trials for multiple myeloma and other cancer types.
High‑Resolution Insight Through Collaboration — Cryo‑EM Structures Supporting the Development of Therapeutic IgE
Therapeutic antibodies of the IgE class are attracting increasing interest as a new modality in oncology. In a recent Nature Scientific Reports publication, clinical stage oncology company Epsilogen explores whether increasing monovalent affinity translates into improved anti‑tumour potency for a biotherapeutic IgE.
To address this, Epsilogen engineered a panel of affinity‑matured HER2‑targeting IgE variants and evaluated their biological activity across multiple in vitro and in vivo models. A key part of this study required the generation of high-resolution structural evidence to determine whether increased potency arose from affinity enhancement alone, rather than from changes in epitope specificity.
Using cryo‑EM datasets generated by Epsilogen, in collaboration with the Cambridge cryo‑EM facility, Sygnature Discovery supported the project at the structure elucidation and analysis stage. Our cryo-EM team processed the data, reconstructed 3D maps for the Fab complexes from Epsilogen’s clinical candidates HER2–EPS 226 and HER2–EPS 232, and built and refined atomic models to publication quality.
Figure 1. Structural overview of the HER2–EPS 226/232 interaction. The EPS 226/232 Fab engages its epitope on HER2, with the light chain coloured yellow and the heavy chain coloured purple.
The resulting structures, resolved to 2.98 Å (HER2-EPS 226) and 3.5 Å (HER2-EPS 232) global resolution, enabled detailed definition of the Fab–HER2 interface.
Despite pronounced preferred orientation, a commonly encountered issue in cryo-EM samples, sufficient density was obtained to build accurate models. Local resolution analysis showed that the central binding region was particularly well resolved. This level of detail allowed confident placement of side chains at the epitope–paratope interface and meaningful comparison between variants.
Figure 2. High resolution is observed in the central binding region, including the epitope–paratope interface. In contrast, HER2 domain IV and the Fab constant regions are less well resolved, reflecting greater conformational heterogeneity.
Structural overlay of the two complexes revealed that EPS 226 and the affinity matured variant EPS 232 engage HER2 through conserved CDR mediated interactions at the same epitope.
Figure 3. Structural overlay showing conserved CDR‑mediated recognition of the same HER2 epitope by EPS226 and EPS232 through closely related CDR interactions.
Crucially, this demonstrates that the enhanced biological potency of EPS 232 is driven by increased affinity rather than epitope drift. Together with the biological data, these structures provide definitive evidence that affinity maturation alone can deliver functional improvement in HER2 targeting IgE antibodies.
Enabling insight through flexible collaboration
This project highlights Sygnature’s ability to integrate seamlessly into client workflows. While we offer a full gene to structure cryo-EM pipeline, here we worked from client generated data to deliver high impact structural insight. Our cloud-enabled infrastructure, including scalable cryo-EM data processing on AWS, supports efficient and reproducible handling of large datasets.
For emerging modalities such as therapeutic IgE, structural biology is a powerful tool for derisking candidates, validating mechanisms of action, and informing discovery decisions. We were delighted to support Epsilogen in advancing this important work and contributing to the growing understanding of IgE as a therapeutic platform.
Data availability
Coordinate models and cryo-EM maps have been deposited in the PDB/EMDB under accession codes 9T3S and EMD55518 (HER2–EPS 226 Fab) and 9T3R and EMD55517 (HER2–EPS 232 Fab).