Eukaryotic mRNA decay is a highly regulated process allowing cells to rapidly modulate protein production in response to internal and environmental cues. Mature translatable eukaryotic mRNAs are protected from fast and uncontrolled degradation in the cytoplasm by two cis-acting stability determinants: a methylguanosine (m(7)G) cap and a poly(A) tail at their 5' and 3' extremities, respectively. The hydrolysis of the m(7)G cap structure, known as decapping, is performed by the complex composed of the Dcp2 catalytic subunit and its partner Dcp1. The Dcp1-Dcp2 decapping complex has a low intrinsic activity and requires accessory factors to be fully active. Among these factors, Pat1 is considered to be a central scaffolding protein involved in ...
Pat1 is a hub for mRNA metabolism, acting in pre-mRNA splicing, translation repression, and mRNA dec...
A single Dcp1-Dcp2 decapping enzyme targets diverse classes of yeast mRNAs for decapping-dependent 5...
Post-transcriptional regulation of gene expression is largely achieved at the level of splicing in t...
International audienceEukaryotic mRNA decay is a highly regulated process allowing cells to rapidly ...
<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...
International audienceThe Pat1 protein is a central player of eukaryotic mRNA decay that has also be...
The decay of mRNAs is a key step in eukaryotic gene expression. The cytoplasmic Lsm1-7-Pat1 complex ...
Eukaryotic mRNA degradation often occurs in a process whereby translation initiation is inhibited an...
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...
SummaryThe decay of mRNAs is a key step in eukaryotic gene expression. The cytoplasmic Lsm1-7-Pat1 c...
The Dcp1-Dcp2 decapping enzyme and the decapping activators Pat1, Dhh1, and Lsm1 regulate mRNA decap...
AbstractIn yeast, the activators of mRNA decapping, Pat1, Lsm1 and Dhh1, accumulate in processing bo...
Bulk RNA degradation irreversibly removes an mRNA from the translating pool to regulate gene express...
Pat1 is a hub for mRNA metabolism, acting in pre-mRNA splicing, translation repression, and mRNA dec...
A single Dcp1-Dcp2 decapping enzyme targets diverse classes of yeast mRNAs for decapping-dependent 5...
Post-transcriptional regulation of gene expression is largely achieved at the level of splicing in t...
International audienceEukaryotic mRNA decay is a highly regulated process allowing cells to rapidly ...
<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...
International audienceThe Pat1 protein is a central player of eukaryotic mRNA decay that has also be...
The decay of mRNAs is a key step in eukaryotic gene expression. The cytoplasmic Lsm1-7-Pat1 complex ...
Eukaryotic mRNA degradation often occurs in a process whereby translation initiation is inhibited an...
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...
SummaryThe decay of mRNAs is a key step in eukaryotic gene expression. The cytoplasmic Lsm1-7-Pat1 c...
The Dcp1-Dcp2 decapping enzyme and the decapping activators Pat1, Dhh1, and Lsm1 regulate mRNA decap...
AbstractIn yeast, the activators of mRNA decapping, Pat1, Lsm1 and Dhh1, accumulate in processing bo...
Bulk RNA degradation irreversibly removes an mRNA from the translating pool to regulate gene express...
Pat1 is a hub for mRNA metabolism, acting in pre-mRNA splicing, translation repression, and mRNA dec...
A single Dcp1-Dcp2 decapping enzyme targets diverse classes of yeast mRNAs for decapping-dependent 5...
Post-transcriptional regulation of gene expression is largely achieved at the level of splicing in t...