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Re-exploring the anthracycline chemical space for better anti-cancer compounds
Fluorescence polarisation activity-based protein profiling for the identification of deoxynojirimycin-type inhibitors selective for lysosomal retaining alpha- and beta-glucosidases
Arginine ADP-Ribosylation
Comparative photoaffinity profiling of omega-3 signaling lipid probes reveals prostaglandin reductase 1 as a metabolic hub in human macrophages
Treatment with HIV-protease inhibitor nelfinavir identifies membrane lipid composition and fluidity as a therapeutic target in advanced multiple myeloma
Epitope recognition of a monoclonal antibody raised against a synthetic glycerol phosphate based teichoic acid
Bioorthogonal protein labelling enables the study of antigen processing of citrullinated and carbamylated auto-antigens
Synthetic (N,N-dimethyl)doxorubicin glycosyl diastereomers to dissect modes of action of anthracycline anticancer drugs
Generation of glucosylated sn-1-glycerolphosphate teichoic acids
Human glucocerebrosidase mediates formation of xylosyl-cholesterol by β-xylosidase and transxylosidase reactions
Simplified monopalmitoyl toll-like receptor 2 ligand mini-U pam for self-adjuvanting neoantigen-based synthetic cancer vaccines
The SPPL3-defined glycosphingolipid repertoire orchestrates HLA class I-mediated immune responses
Doxorubicin and aclarubicin
Structure of a GH51 alpha-l-arabinofuranosidase from Meripilus giganteus: conserved substrate recognition from bacteria to fungi
Multivalent, stabilized mannose-6-phosphates for the targeted delivery of toll-like receptor ligands and peptide antigens
Self-adjuvanting cancer vaccines from conjugation-ready lipid A analogues and synthetic long peptides
Doxorubicin and aclarubicin: shuffling anthracycline glycans for improved anticancer agents
Self-adjuvanting cancer vaccines from conjugation-ready lipid A analogues and synthetic long peptides
Synthesis ofC-glycosyl amino acid building blocks suitable for the solid-phase synthesis of multivalent glycopeptide mimics
Manno-epi-cyclophellitols enable activity-based protein profiling of human alpha-mannosidases and discovery of new golgi mannosidase II inhibitors

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