A change in the transcriptional landscape is an equilibrium-breaking event important for many biological processes. Mitogen-activated protein kinase (MAPK) signaling pathways are dedicated to sensing extracellular cues and are highly conserved across eukaryotes. Modulation of gene expression in response to the extracellular environment is one of the main mechanisms by which MAPK regulates proteome homeostasis to orchestrate adaptive responses that determine cell fate. A massive body of knowledge generated from population and single-cell analyses has led to an understanding of how MAPK pathways operate. MAPKs have thus emerged as fundamental transcriptome regulators that function through a multi-layered control of gene expression, a process ...
AbstractSpecialized gene expression programs are induced by signaling pathways that act on transcrip...
Mitogen-activated protein kinases (MAPKs) are important signaling tools in all eukaryotes, and funct...
In mammalian cells, the MAPK pathways regulate vital processes such as differentiation, growth or de...
AbstractMitogen-activated protein kinase (MAPK) signaling pathways are key mediators of eukaryotic t...
AbstractSignaling pathways that activate different mitogen-activated protein kinases (MAPKs) elicit ...
Cells experience a variety of environmental signals, often simultaneously. These signals may encode ...
The mitogen activated protein kinase (MAP kinase) cascade system represents a highly conserved proto...
Living cells exposed to stressful environmental situations can elicit cellular responses that guaran...
The mitogen-activated protein kinase (MAPK) superfamily consists of three main protein kinase famili...
Cells detect and respond to a wide diversity of environmental signals. These signals commonly stimul...
Signal transduction pathways alter the gene expression program in response to extracellular or intra...
All eukaryotes possess MAPK pathways which allow cells to respond to diverse environmental stimuli, ...
Eukaryotic cells must continuously sense their environments, for example their attachment to extrace...
Signal transduction is indispensible for control of cell growth, differentiation, metabolism, and mi...
Mitogen-activated protein kinases (MAPK) are serine-threonine protein kinases that are activated by ...
AbstractSpecialized gene expression programs are induced by signaling pathways that act on transcrip...
Mitogen-activated protein kinases (MAPKs) are important signaling tools in all eukaryotes, and funct...
In mammalian cells, the MAPK pathways regulate vital processes such as differentiation, growth or de...
AbstractMitogen-activated protein kinase (MAPK) signaling pathways are key mediators of eukaryotic t...
AbstractSignaling pathways that activate different mitogen-activated protein kinases (MAPKs) elicit ...
Cells experience a variety of environmental signals, often simultaneously. These signals may encode ...
The mitogen activated protein kinase (MAP kinase) cascade system represents a highly conserved proto...
Living cells exposed to stressful environmental situations can elicit cellular responses that guaran...
The mitogen-activated protein kinase (MAPK) superfamily consists of three main protein kinase famili...
Cells detect and respond to a wide diversity of environmental signals. These signals commonly stimul...
Signal transduction pathways alter the gene expression program in response to extracellular or intra...
All eukaryotes possess MAPK pathways which allow cells to respond to diverse environmental stimuli, ...
Eukaryotic cells must continuously sense their environments, for example their attachment to extrace...
Signal transduction is indispensible for control of cell growth, differentiation, metabolism, and mi...
Mitogen-activated protein kinases (MAPK) are serine-threonine protein kinases that are activated by ...
AbstractSpecialized gene expression programs are induced by signaling pathways that act on transcrip...
Mitogen-activated protein kinases (MAPKs) are important signaling tools in all eukaryotes, and funct...
In mammalian cells, the MAPK pathways regulate vital processes such as differentiation, growth or de...