Secondary ion mass spectrometry (SIMS) is generally used in imaging the isotopic composition of various materials. It is becoming increasingly popular in biology, especially for investigations of cellular metabolism. However, individual proteins are difficult to identify in SIMS, which limits the ability of this technology to study individual compartments or protein complexes. We present a method for specific protein isotopic and fluorescence labeling (SPILL), based on a novel click reaction with isotopic probes. Using this method, we added (19) F-enriched labels to different proteins, and visualized them by NanoSIMS and fluorescence microscopy. The (19) F signal allowed the precise visualization of the protein of interest, with minimal bac...
International audienceImaging single proteins within cells is challenging if the possibility of arte...
Electron microscopy (EM) has been employed for decades to analyze cell structure. To also analyze th...
Phenotype in multicellular organisms is the consequence of dynamic metabolic events that occur in a ...
Molecular imaging of targeted large biomolecules has been restricted in SIMS due to the limited numb...
In this paper, we present a new experimental methodology to combine mass spectrometry (NanoSIMS) wit...
Stable isotope labels are routinely introduced into proteomes for quantification purposes. Full labe...
Abstract Secondary ion mass spectrometry (SIMS) returns chemically specific data on membrane com...
In this paper, we present a new experimental methodology to combine mass spectrometry (NanoSIMS) wit...
In recent years, mass spectrometry has become a staple technique in biochemistry and molecular biolo...
Secondary-ion mass spectrometry (SIMS) is based on the acceleration of high-energy primary ions onto...
Directed proteomics applies mass spectrometry analysis to a subset of information-rich proteins. Her...
Imaging single proteins within cells is challenging if the possibility of artefacts due to tagging o...
Stable isotopes are ideal labels for studying biological processes because they have little or no ef...
Stable isotopes are ideal labels for studying biological processes because they have little or no ef...
Dynamic SIMS imaging is proposed to map sub-cellular distributions of isotopically labelled, exogeno...
International audienceImaging single proteins within cells is challenging if the possibility of arte...
Electron microscopy (EM) has been employed for decades to analyze cell structure. To also analyze th...
Phenotype in multicellular organisms is the consequence of dynamic metabolic events that occur in a ...
Molecular imaging of targeted large biomolecules has been restricted in SIMS due to the limited numb...
In this paper, we present a new experimental methodology to combine mass spectrometry (NanoSIMS) wit...
Stable isotope labels are routinely introduced into proteomes for quantification purposes. Full labe...
Abstract Secondary ion mass spectrometry (SIMS) returns chemically specific data on membrane com...
In this paper, we present a new experimental methodology to combine mass spectrometry (NanoSIMS) wit...
In recent years, mass spectrometry has become a staple technique in biochemistry and molecular biolo...
Secondary-ion mass spectrometry (SIMS) is based on the acceleration of high-energy primary ions onto...
Directed proteomics applies mass spectrometry analysis to a subset of information-rich proteins. Her...
Imaging single proteins within cells is challenging if the possibility of artefacts due to tagging o...
Stable isotopes are ideal labels for studying biological processes because they have little or no ef...
Stable isotopes are ideal labels for studying biological processes because they have little or no ef...
Dynamic SIMS imaging is proposed to map sub-cellular distributions of isotopically labelled, exogeno...
International audienceImaging single proteins within cells is challenging if the possibility of arte...
Electron microscopy (EM) has been employed for decades to analyze cell structure. To also analyze th...
Phenotype in multicellular organisms is the consequence of dynamic metabolic events that occur in a ...