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September 17, 20250 citationsOpen Access

Automated and modular protein binder design with BinderFlow

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CCCarlos Chacon-SanchezNGNayim González-RodríguezÓLÓscar Llorca

Key Points

  • BinderFlow revolutionises protein binder design, enabling real-time campaign monitoring and reduced human intervention.
  • The modular structure of BinderFlow allows easy incorporation of new models and alternative design strategies.
  • BFmonitor, a web-based dashboard, facilitates design evaluation and hit selection in protein development.
  • Together, these tools enhance the accessibility of generative protein design for both exploratory and production-level research.

Abstract

Deep learning has revolutionised de novo protein design, with new models achieving unprecedented success in creating novel proteins with specific functions, including artificial protein binders. However, current methods remain computationally demanding and challenging to operate without specialised infrastructure and expertise. To overcome these limitations, we developed BinderFlow, a structured and parallelised pipeline for protein binder design. Its batch-based nature enables live monitoring of design campaigns, seamless coexistence with other GPU-intensive processes, and reduces human intervention. Furthermore, BinderFlow's modular structure enables straightforward modifications to the design pipeline to incorporate new models and tools or to implement alternative design strategies. Complementing this, we developed BFmonitor, a web-based dashboard that simplifies campaign monitoring, design evaluation, and hit selection. Together, these tools lower the entry barrier for non-specialised users and streamline expert workflows, making generative protein design more accessible, scalable and practical for both exploratory and production-level research.

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Cite This Study

Chacon-Sanchez et al. (2025) studied this question.

synapsesocial.com/papers/68d4596631b076d99fa5c2b0https://doi.org/10.1101/2025.09.10.675490
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