chemical biology

  • Rewriting the Ubiquitin Code: Sugars and Metabolites Enter the Picture

    For decades, ubiquitin has been considered almost exclusively as a protein tag. Its C-terminal Gly-Gly motif forms isopeptide (or occasionally thio-/oxy-ester) bonds with Lys, Cys, Ser or Thr residues, marking proteins for degradation, trafficking or regulation. While a handful of reports have suggested that ubiquitin can also be attached to sugars, lipids, nucleic acids or…

  • Nickel-Mediated Protein Arylation Inside Living Cells

    While transition metals drive powerful bond-forming reactions in synthetic chemistry, their use for covalent modification of biomolecules has been largely underexplored and restricted to isolated proteins in vitro. Aryl-metal reagents for protein S-arylation have so far been dominated by palladium and gold complexes, but these systems require sterically bulky phosphine ligands that promote reductive elimination,…

  • Breaking New Ground in mRNA Degradation

    About 85% of disease-related proteins lack suitable binding pockets for conventional drug discovery. While RNA-targeting approaches like siRNAs have shown promise (with several FDA approvals), they struggle with poor cellular uptake, limited tissue specificity, and complex, costly synthesis. Researchers from Peking University Shenzhen Graduate School introduce a novel modality for targeting “undruggable” proteins through RNA…

  • Smart Molecules Targeting Cancer Powerhouse

    How can bioorthogonal chemistry and mitochondrial targeting rewrite cancer immunotherapy? By creating enzyme-responsive nanoparticles that self-assemble in tumors and chemically “click” with an arsenic payload, scientists achieved complete tumor eradication and durable immune memory. Two main components – two small molecules (Fig. panel b)๐Ÿ’Š ๐๐ซ๐จ๐›๐ž ๐-๐“๐‚๐Ž-๐“๐๐:An ALP-responsive small molecule comprising a phosphate-caged fluorophore (mCy), a…

  • From DNA Code to Chemistry

    Sumon Pratihar, Eric T. Kool and his team from Stanford University just published new paper in ๐˜ˆ๐˜ฏ๐˜จ๐˜ฆ๐˜ธ๐˜ข๐˜ฏ๐˜ฅ๐˜ต๐˜ฆ ๐˜Š๐˜ฉ๐˜ฆ๐˜ฎ๐˜ช๐˜ฆ, unlocking a new way of selective RNA modification: “๐˜š๐˜ฆ๐˜ฒ๐˜ถ๐˜ฆ๐˜ฏ๐˜ค๐˜ฆ-๐˜š๐˜ฑ๐˜ฆ๐˜ค๐˜ช๐˜ง๐˜ช๐˜ค ๐˜๐˜ฏ๐˜ด๐˜ต๐˜ข๐˜ญ๐˜ญ๐˜ข๐˜ต๐˜ช๐˜ฐ๐˜ฏ ๐˜ฐ๐˜ง ๐˜ˆ๐˜ณ๐˜บ๐˜ญ ๐˜Ž๐˜ณ๐˜ฐ๐˜ถ๐˜ฑ๐˜ด ๐˜ช๐˜ฏ ๐˜™๐˜•๐˜ˆ ๐˜ท๐˜ช๐˜ข ๐˜‹๐˜•๐˜ˆ-๐˜Š๐˜ข๐˜ต๐˜ข๐˜ญ๐˜บ๐˜ด๐˜ต ๐˜Š๐˜ฐ๐˜ฏ๐˜ซ๐˜ถ๐˜จ๐˜ข๐˜ต๐˜ฆ๐˜ด” Key innovationDNA-directed approach that utilizes a DNA oligonucleotide carrying a nucleophilic amine to promote site-selective SNAr reaction at RNA…

  • Why Would You Biotinylate Ubiquitin?

    E-STUB: A Precision Tool for Mapping E3 Ligase Substrates In march 2025, colleagues from Dana Faber and The Broad Institute published in ๐˜•๐˜ข๐˜ต๐˜ถ๐˜ณ๐˜ฆ ๐˜Š๐˜ฉ๐˜ฆ๐˜ฎ๐˜ช๐˜ค๐˜ข๐˜ญ ๐˜‰๐˜ช๐˜ฐ๐˜ญ๐˜ฐ๐˜จ๐˜บ: “๐˜œ๐˜ฃ๐˜ช๐˜ฒ๐˜ถ๐˜ช๐˜ต๐˜ช๐˜ฏ-๐˜ด๐˜ฑ๐˜ฆ๐˜ค๐˜ช๐˜ง๐˜ช๐˜ค ๐˜ฑ๐˜ณ๐˜ฐ๐˜น๐˜ช๐˜ฎ๐˜ช๐˜ต๐˜บ ๐˜ญ๐˜ข๐˜ฃ๐˜ฆ๐˜ญ๐˜ช๐˜ฏ๐˜จ ๐˜ง๐˜ฐ๐˜ณ ๐˜ต๐˜ฉ๐˜ฆ ๐˜ช๐˜ฅ๐˜ฆ๐˜ฏ๐˜ต๐˜ช๐˜ง๐˜ช๐˜ค๐˜ข๐˜ต๐˜ช๐˜ฐ๐˜ฏ ๐˜ฐ๐˜ง ๐˜Œ3 ๐˜ญ๐˜ช๐˜จ๐˜ข๐˜ด๐˜ฆ ๐˜ด๐˜ถ๐˜ฃ๐˜ด๐˜ต๐˜ณ๐˜ข๐˜ต๐˜ฆ๐˜ด” How it worksE-STUB (E3-Substrate Tagging by Ubiquitin Biotinylation) combines the principles of proximity labeling with the functional specificity of ubiquitin…

  • BRET: State-Of-The-Art Technology for Target Engagement in Living Cells

    Direct monitoring of a binding interaction between biomolecules and their ligands is one of the cornerstones of early drug discovery, chemical biology and related disciplines. Assays that allow (semi)-quantitative measurements of the direct binding event, so-called target engagement (TE), became indispensable components of workflows for development or characterization of small molecules, peptides, antibodies, oligonucleotides and…

  • Editing Protein Backbone Inside Living Cells

    For decades, creating proteins with extended backbones (ฮฒ, ฮณ, ฮด-amino acids) inside living cells has been challenging. Researchers at University of California, Berkeley (Alanna Schepartz, Leah Roe), Yale University, Amgen and collaborators developedย BEAR reactionsย to address this challenge. ๐–๐ก๐ฒ ๐๐จ๐ž๐ฌ ๐ญ๐ก๐ข๐ฌ ๐ฆ๐š๐ญ๐ญ๐ž๐ซ?โ†’ Extension of backbone can lead to improved phys-chem propertiesโ†’ Better stability and resistance to…

  • Let it GLOW: Novel Proximity Inducing Modality for DNA Modification

    DNA methyltransferases (MTases) can recognize specific DNA sequences and transfer a methyl group from the S-adenosyl-L-methionine (SAM) cofactor to a target nucleobase. This ability has been exploited for sequence-specific DNA labeling using synthetic SAM analogues (SMILing, mTAG). However, both approaches (SMILing and mTAG) share following limitations:๐Ÿ”ธ The SAM analogues are chemically reactive (labile aziridine rings…