Translational repression and deadenylation of eukaryotic mRNAs result either in the sequestration of the transcripts in a nontranslatable pool or in their degradation. Removal of the 5' cap structure is a crucial step that commits deadenylated mRNAs to 5'-to-3' degradation. Pat1, Edc3 and the DEAD-box protein Dhh1 are evolutionary conserved factors known to participate in both translational repression and decapping, but their interplay is currently unclear. We report the 2.8 A resolution structure of yeast Dhh1 bound to the N-terminal domain of Pat1. The structure shows how Pat1 wraps around the C-terminal RecA domain of Dhh1, docking onto the Phe-Asp-Phe (FDF) binding site. The FDF-binding site of Dhh1 also recognizes Edc3, revealing why t...
<div><p>Eukaryotic mRNA decay is a highly regulated process allowing cells to rapidly modulate prote...
Eukaryotic mRNA decay is a highly regulated process allowing cells to rapidly modulate protein produ...
Rapid modulation of gene expression is critical for cells to respond to environmental challenges and...
Translational repression and deadenylation of eukaryotic mRNAs result either in the sequestration of...
Translational repression and deadenylation of eukaryotic mRNAs result either in the sequestration of...
International audienceThe Pat1 protein is a central player of eukaryotic mRNA decay that has also be...
Dhh1 and Pat1 in yeast are mRNA decapping acti-vators/translational repressors thought to play key r...
Eukaryotic mRNA degradation often occurs in a process whereby translation initiation is inhibited an...
Translational control and messenger RNA (mRNA) decay represent important control points in the regul...
Translational control and messenger RNA (mRNA) decay represent important control points in the regul...
<div><p>Translational control and messenger RNA (mRNA) decay represent important control points in t...
AbstractIn yeast, the activators of mRNA decapping, Pat1, Lsm1 and Dhh1, accumulate in processing bo...
Eukaryotic mRNA decay is a highly regulated process allowing cells to rapidly modulate protein produ...
International audienceEukaryotic mRNA decay is a highly regulated process allowing cells to rapidly ...
Dhh1 is a highly conserved DEAD-box protein that has been implicated in many processes involved in m...
<div><p>Eukaryotic mRNA decay is a highly regulated process allowing cells to rapidly modulate prote...
Eukaryotic mRNA decay is a highly regulated process allowing cells to rapidly modulate protein produ...
Rapid modulation of gene expression is critical for cells to respond to environmental challenges and...
Translational repression and deadenylation of eukaryotic mRNAs result either in the sequestration of...
Translational repression and deadenylation of eukaryotic mRNAs result either in the sequestration of...
International audienceThe Pat1 protein is a central player of eukaryotic mRNA decay that has also be...
Dhh1 and Pat1 in yeast are mRNA decapping acti-vators/translational repressors thought to play key r...
Eukaryotic mRNA degradation often occurs in a process whereby translation initiation is inhibited an...
Translational control and messenger RNA (mRNA) decay represent important control points in the regul...
Translational control and messenger RNA (mRNA) decay represent important control points in the regul...
<div><p>Translational control and messenger RNA (mRNA) decay represent important control points in t...
AbstractIn yeast, the activators of mRNA decapping, Pat1, Lsm1 and Dhh1, accumulate in processing bo...
Eukaryotic mRNA decay is a highly regulated process allowing cells to rapidly modulate protein produ...
International audienceEukaryotic mRNA decay is a highly regulated process allowing cells to rapidly ...
Dhh1 is a highly conserved DEAD-box protein that has been implicated in many processes involved in m...
<div><p>Eukaryotic mRNA decay is a highly regulated process allowing cells to rapidly modulate prote...
Eukaryotic mRNA decay is a highly regulated process allowing cells to rapidly modulate protein produ...
Rapid modulation of gene expression is critical for cells to respond to environmental challenges and...