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letališče premešamo Brezdomci bennett nature chemical biology 2009 Prosim Stalno Citat

Ubiquitin-binding domains — from structures to functions | Nature Reviews  Molecular Cell Biology
Ubiquitin-binding domains — from structures to functions | Nature Reviews Molecular Cell Biology

Comparative metabolomics with Metaboseek reveals functions of a conserved  fat metabolism pathway in C. elegans | Nature Communications
Comparative metabolomics with Metaboseek reveals functions of a conserved fat metabolism pathway in C. elegans | Nature Communications

Connecting omics signatures and revealing biological mechanisms with iLINCS  | Nature Communications
Connecting omics signatures and revealing biological mechanisms with iLINCS | Nature Communications

Apoptolidin family glycomacrolides target leukemia through inhibition of  ATP synthase | Nature Chemical Biology
Apoptolidin family glycomacrolides target leukemia through inhibition of ATP synthase | Nature Chemical Biology

Tyrosine Bioconjugation through Aqueous Ene-Type Reactions: A Click-Like  Reaction for Tyrosine | Journal of the American Chemical Society
Tyrosine Bioconjugation through Aqueous Ene-Type Reactions: A Click-Like Reaction for Tyrosine | Journal of the American Chemical Society

The promise and peril of chemical probes | Nature Chemical Biology
The promise and peril of chemical probes | Nature Chemical Biology

UV-Induced Ligand Exchange in MHC Class I Protein Crystals | Journal of the  American Chemical Society
UV-Induced Ligand Exchange in MHC Class I Protein Crystals | Journal of the American Chemical Society

Absolute metabolite concentrations and implied enzyme active site occupancy  in Escherichia coli | Nature Chemical Biology
Absolute metabolite concentrations and implied enzyme active site occupancy in Escherichia coli | Nature Chemical Biology

Absolute metabolite concentrations and implied enzyme active site occupancy  in Escherichia coli | Nature Chemical Biology
Absolute metabolite concentrations and implied enzyme active site occupancy in Escherichia coli | Nature Chemical Biology

A brief guideline for studies of phase-separated biomolecular condensates | Nature  Chemical Biology
A brief guideline for studies of phase-separated biomolecular condensates | Nature Chemical Biology

Mimicry of the proton wire mechanism of enzymes inside a supramolecular  capsule enables β-selective O-glycosylations | Nature Chemistry
Mimicry of the proton wire mechanism of enzymes inside a supramolecular capsule enables β-selective O-glycosylations | Nature Chemistry

Absolute metabolite concentrations and implied enzyme active site occupancy  in Escherichia coli | Nature Chemical Biology
Absolute metabolite concentrations and implied enzyme active site occupancy in Escherichia coli | Nature Chemical Biology

Metabolic engineering strategies to enable microbial utilization of C1  feedstocks | Nature Chemical Biology
Metabolic engineering strategies to enable microbial utilization of C1 feedstocks | Nature Chemical Biology

Genetically encoded multivalent liquid glycan array displayed on M13  bacteriophage | Nature Chemical Biology
Genetically encoded multivalent liquid glycan array displayed on M13 bacteriophage | Nature Chemical Biology

Peroxisome compartmentalization of a toxic enzyme improves alkaloid  production | Nature Chemical Biology
Peroxisome compartmentalization of a toxic enzyme improves alkaloid production | Nature Chemical Biology

In situ chromatin interactomics using a chemical bait and trap approach | Nature  Chemistry
In situ chromatin interactomics using a chemical bait and trap approach | Nature Chemistry

A broken biogeochemical cycle | Nature
A broken biogeochemical cycle | Nature

Tools, tactics and objectives to interrogate cellular roles of O-GlcNAc in  disease | Nature Chemical Biology
Tools, tactics and objectives to interrogate cellular roles of O-GlcNAc in disease | Nature Chemical Biology

A counter-enzyme complex regulates glutamate metabolism in Bacillus  subtilis | Nature Chemical Biology
A counter-enzyme complex regulates glutamate metabolism in Bacillus subtilis | Nature Chemical Biology

A synthetic system for asymmetric cell division in Escherichia coli | Nature  Chemical Biology
A synthetic system for asymmetric cell division in Escherichia coli | Nature Chemical Biology

Horizontal gene transfer enables programmable gene stability in synthetic  microbiota | Nature Chemical Biology
Horizontal gene transfer enables programmable gene stability in synthetic microbiota | Nature Chemical Biology

Inhibition of RNA-binding proteins with small molecules | Nature Reviews  Chemistry
Inhibition of RNA-binding proteins with small molecules | Nature Reviews Chemistry

Cancer-associated IDH1 mutations produce 2-hydroxyglutarate | Nature
Cancer-associated IDH1 mutations produce 2-hydroxyglutarate | Nature

Phase separation of RNA-binding protein promotes polymerase binding and  transcription | Nature Chemical Biology
Phase separation of RNA-binding protein promotes polymerase binding and transcription | Nature Chemical Biology

Why succinate? Physiological regulation by a mitochondrial coenzyme Q  sentinel | Nature Chemical Biology
Why succinate? Physiological regulation by a mitochondrial coenzyme Q sentinel | Nature Chemical Biology

The chemical evolution of oligonucleotide therapies of clinical utility |  Nature Biotechnology
The chemical evolution of oligonucleotide therapies of clinical utility | Nature Biotechnology

Networking by small-molecule hormones in plant immunity | Nature Chemical  Biology
Networking by small-molecule hormones in plant immunity | Nature Chemical Biology

Metabolite concentrations, fluxes and free energies imply efficient enzyme  usage | Nature Chemical Biology
Metabolite concentrations, fluxes and free energies imply efficient enzyme usage | Nature Chemical Biology