Living organisms change their proteome dramatically to sustain a stable internal milieu in fluctuating environments. To study the dynamics of proteins during stress, we measured the localization and abundance of the Saccharomyces cerevisiae proteome under various growth conditions and genetic backgrounds using the GFP collection. We created a database (DB) called 'LoQAtE' (Localizaiton and Quantitation Atlas of the yeast proteomE), available online at http://www.weizmann.ac.il/molgen/loqate/, to provide easy access to these data. Using LoQAtE DB, users can get a profile of changes for proteins of interest as well as querying advanced intersections by either abundance changes, primary localization or localization shifts over the tested condi...
In recent years, proteomic data have contributed to genome annotation efforts, most notably in human...
Integrated regulatory networks can be powerful tools to examine and test properties of cellular syst...
Variation among individuals arises in part from differences in DNA sequences, but the genetic basis ...
yeast proteomE. A new tool for multiparametric dissection of single-protein behavior in response to ...
SummaryProteomics has proved invaluable in generating large-scale quantitative data; however, the de...
SummaryA single yeast cell contains a hundred million protein molecules. How these proteins are orga...
Observing cellular responses to perturbations is central to generating and testing hypotheses in bio...
A single yeast cell contains a hundred million protein molecules. How these proteins are organized t...
Experience from different fields of life sciences suggests that accessible, complete reference maps ...
Protein abundance is controlled at the transcriptional, translational and post-translational levels,...
Experience from different fields of life sciences suggests that accessible, complete reference maps ...
The quantitative proteomic analysis of complex protein mixtures is emerging as a technically challen...
The quantitative proteomic analysis of complex protein mixtures is emerging as a technically challen...
Knowledge of the subcellular localization of proteins is indispensable to understand their physiolog...
Integrated regulatory networks can be powerful tools to examine and test properties of cellular syst...
In recent years, proteomic data have contributed to genome annotation efforts, most notably in human...
Integrated regulatory networks can be powerful tools to examine and test properties of cellular syst...
Variation among individuals arises in part from differences in DNA sequences, but the genetic basis ...
yeast proteomE. A new tool for multiparametric dissection of single-protein behavior in response to ...
SummaryProteomics has proved invaluable in generating large-scale quantitative data; however, the de...
SummaryA single yeast cell contains a hundred million protein molecules. How these proteins are orga...
Observing cellular responses to perturbations is central to generating and testing hypotheses in bio...
A single yeast cell contains a hundred million protein molecules. How these proteins are organized t...
Experience from different fields of life sciences suggests that accessible, complete reference maps ...
Protein abundance is controlled at the transcriptional, translational and post-translational levels,...
Experience from different fields of life sciences suggests that accessible, complete reference maps ...
The quantitative proteomic analysis of complex protein mixtures is emerging as a technically challen...
The quantitative proteomic analysis of complex protein mixtures is emerging as a technically challen...
Knowledge of the subcellular localization of proteins is indispensable to understand their physiolog...
Integrated regulatory networks can be powerful tools to examine and test properties of cellular syst...
In recent years, proteomic data have contributed to genome annotation efforts, most notably in human...
Integrated regulatory networks can be powerful tools to examine and test properties of cellular syst...
Variation among individuals arises in part from differences in DNA sequences, but the genetic basis ...