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February 12, 20260 citationsOpen Access

Toward the Chemoenzymatic Synthesis of DNA-Encoded Libraries.

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DSDaniela SchaubALAlice LessingGHGerlis von Haugwitz

Key Points

  • The aim is to explore methods to enhance the chemical diversity of DNA-encoded libraries while maintaining DNA integrity.
  • Discussed the current limitations in DNA-encoded libraries
  • Proposed the use of enzymatic catalysis for on-DNA synthesis
  • Outlined the requirements for reaction efficiency and selectivity in chemical reactions
  • Identified that current chemical diversity in DELs is limited
  • Noted that high efficiency and selectivity are crucial for hit identification
  • Emphasized enzymatic catalysis as a promising solution for expanding DEL-accessible chemical space

Abstract

DNA-encoded libraries (DELs) have become a powerful platform in drug discovery, practiced both by the pharmaceutical industry and academia. Each small molecule contained in a DEL is covalently linked to a DNA tag which serves as an amplifiable barcode facilitating binder identification. However, the chemical diversity accessible in DELs remains limited by the need to perform reactions under conditions that preserve the integrity of the DNA tag. Additionally, chemical reactions must proceed with high efficiency and selectivity to minimize side products and unreacted starting materials, which cannot be removed and may hamper hit identification. Consequently, expanding the DEL chemical space requires the development of methods that combine high reaction performance with DNA compatibility. In this outlook, we highlight the potential of enzymatic catalysis for on-DNA synthesis, which offers a promising route to expand DEL-accessible chemical space.

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Cite This Study

Schaub et al. (2026) studied this question.

synapsesocial.com/papers/698d6e5a5be6419ac0d53fechttps://doi.org/10.48620/94534
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