Abstract Cell growth and quiescence in eukaryotic cells is controlled by an evolutionarily conserved network of signaling pathways. Signal transduction networks operate to modulate a wide range of cellular processes and physiological properties when cells exit proliferative growth and initiate a quiescent state. How signaling networks function to respond to diverse signals that result in cell cycle exit and establishment of a quiescent state is poorly understood. Here, we studied the function of signaling pathways in quiescent cells using global genetic interaction mapping in the model eukaryotic cell, Saccharomyces cerevisiae (budding yeast). We performed pooled analysis of genotypes using molecular barcode sequencing (Bar‐seq) to test the...
SummaryReversible protein phosphorylation is a signaling mechanism involved in all cellular processe...
Molecular signaling networks are ubiquitous across life and likely evolved to allow organisms to sen...
INTRODUCTION: Genetic interactions occur when mutations in two or more genes combine to generate an ...
SummaryTo understand relationships between phosphorylation-based signaling pathways, we analyzed 150...
Upon starvation for glucose or any other macronutrient, yeast cells exit from the mitotic cell cycle...
All organisms have cells that are capable of exiting the normal cell cycle and entering a non-prolif...
All organisms have cells that are capable of exiting the normal cell cycle and entering a non-prolif...
International audienceBackground: Cellular quiescence is a reversible differentiation state during w...
Genetic interaction screens have been applied with great success in several organisms to study gene ...
Studies on replicative and chronological aging in Saccharomyces cerevisiae have greatly advanced our...
Genetic interaction screens have been applied with great success in several organisms to study gene ...
<div><p>Molecular signaling networks are ubiquitous across life and likely evolved to allow organism...
Lifespan is influenced by a large number of conserved proteins and gene-regulatory pathways. Here, w...
International audienceThe genetics of quiescence is an emerging field compared to that of growth, ye...
INTRODUCTION: Genetic interactions occur when mutations in two or more genes combine to generate an ...
SummaryReversible protein phosphorylation is a signaling mechanism involved in all cellular processe...
Molecular signaling networks are ubiquitous across life and likely evolved to allow organisms to sen...
INTRODUCTION: Genetic interactions occur when mutations in two or more genes combine to generate an ...
SummaryTo understand relationships between phosphorylation-based signaling pathways, we analyzed 150...
Upon starvation for glucose or any other macronutrient, yeast cells exit from the mitotic cell cycle...
All organisms have cells that are capable of exiting the normal cell cycle and entering a non-prolif...
All organisms have cells that are capable of exiting the normal cell cycle and entering a non-prolif...
International audienceBackground: Cellular quiescence is a reversible differentiation state during w...
Genetic interaction screens have been applied with great success in several organisms to study gene ...
Studies on replicative and chronological aging in Saccharomyces cerevisiae have greatly advanced our...
Genetic interaction screens have been applied with great success in several organisms to study gene ...
<div><p>Molecular signaling networks are ubiquitous across life and likely evolved to allow organism...
Lifespan is influenced by a large number of conserved proteins and gene-regulatory pathways. Here, w...
International audienceThe genetics of quiescence is an emerging field compared to that of growth, ye...
INTRODUCTION: Genetic interactions occur when mutations in two or more genes combine to generate an ...
SummaryReversible protein phosphorylation is a signaling mechanism involved in all cellular processe...
Molecular signaling networks are ubiquitous across life and likely evolved to allow organisms to sen...
INTRODUCTION: Genetic interactions occur when mutations in two or more genes combine to generate an ...