The central role of translation regulation in the control of critical cellular processes has long been recognized. Yet the systematic exploration of quantitative changes in translation at a genome-wide scale in response to specific stimuli has only recently become technically feasible. Using a genetic approach, we have identified new Arabidopsis weak-ethylene insensitive mutants that also display defects in translation, which suggested the existence of a previously unknown molecular module involved in ethylene-mediated translation regulation of components of this signaling pathway. To explore this link in detail, we implemented for Arabidopsis the ribosome-footprinting technology, which enables the study of translation at a whole-genome lev...
AbstractEthylene is an important hormonal regulator of plant growth that acts by regulating gene exp...
Ethylene is a gaseous plant growth regulator that controls a multitude of developmental and stress r...
There is a fundamental gap in our understanding of the regulation of translation in plants. None of ...
Translational regulation has long been recognized as a vital process in the cell responses to the en...
SummaryThe central role of translation in modulating gene activity has long been recognized, yet the...
Ethylene regulates many aspects of plant growth and development. In the presence of ethylene, the C ...
Ethylene is a gaseous phytohormone that plays vital roles in plant growth and development. Previous ...
Ethylene is a gaseous phytohormone that plays vital roles in plant growth and development. Previous ...
Background Within the scanning model of translation initiation, reinitiation is a non-canonical mech...
The synthesis of proteins – translation – is one of the cellular processes that consume a great deal...
AbstractThe plant hormone ethylene regulates a wide range of developmental processes and the respons...
AbstractPlants use ethylene gas as a signal to regulate myriad developmental processes and stress re...
BACKGROUND: Genome-wide assays performed in Arabidopsis and other organisms have revealed that the t...
In unstressed conditions, the cap‐binding protein, eIF4E, binds the 5′ cap structure (m7G) on mRNA a...
The plant hormone ethylene participates in many developmental processes, yet the molecular mechanism...
AbstractEthylene is an important hormonal regulator of plant growth that acts by regulating gene exp...
Ethylene is a gaseous plant growth regulator that controls a multitude of developmental and stress r...
There is a fundamental gap in our understanding of the regulation of translation in plants. None of ...
Translational regulation has long been recognized as a vital process in the cell responses to the en...
SummaryThe central role of translation in modulating gene activity has long been recognized, yet the...
Ethylene regulates many aspects of plant growth and development. In the presence of ethylene, the C ...
Ethylene is a gaseous phytohormone that plays vital roles in plant growth and development. Previous ...
Ethylene is a gaseous phytohormone that plays vital roles in plant growth and development. Previous ...
Background Within the scanning model of translation initiation, reinitiation is a non-canonical mech...
The synthesis of proteins – translation – is one of the cellular processes that consume a great deal...
AbstractThe plant hormone ethylene regulates a wide range of developmental processes and the respons...
AbstractPlants use ethylene gas as a signal to regulate myriad developmental processes and stress re...
BACKGROUND: Genome-wide assays performed in Arabidopsis and other organisms have revealed that the t...
In unstressed conditions, the cap‐binding protein, eIF4E, binds the 5′ cap structure (m7G) on mRNA a...
The plant hormone ethylene participates in many developmental processes, yet the molecular mechanism...
AbstractEthylene is an important hormonal regulator of plant growth that acts by regulating gene exp...
Ethylene is a gaseous plant growth regulator that controls a multitude of developmental and stress r...
There is a fundamental gap in our understanding of the regulation of translation in plants. None of ...