DCP1 stimulates the decapping enzyme DCP2, which removes the mRNA 5' cap structure committing mRNAs to degradation. In multicellular eukaryotes, DCP1-DCP2 interaction is stabilized by additional proteins, including EDC4. However, most information on DCP2 activation stems from studies in S. cerevisiae, which lacks EDC4. Furthermore, DCP1 orthologs from multicellular eukaryotes have a C-terminal extension, absent in fungi. Here, we show that in metazoa, a conserved DCP1 C-terminal domain drives DCP1 trimerization. Crystal structures of the DCP1-trimerization domain reveal an antiparallel assembly comprised of three kinked alpha-helices. Trimerization is required for DCP1 to be incorporated into active decapping complexes and for efficient mRN...
Crystal structures of enzymes are indispensable to understanding their mechanisms on a molecular lev...
Decapping by Dcp2 is an essential step in 5′-3 ′ mRNA decay. In yeast, decapping requires an open-to...
mRNA decapping irreversibly targets mRNAs for fast decay. Cap removal is catalyzed by decapping prot...
The removal of the 5'-cap structure by the decapping enzyme DCP2 and its coactivator DCP1 shuts down...
The removal of the mRNA 5' cap (decapping) by Dcp2 shuts down translation and commits mRNA to full d...
The removal of the 5' 7-methylguanosine mRNA cap structure (decapping) is a central step in the 5'-3...
The Dcp1:Dcp2 decapping complex catalyses the removal of the mRNA 5′ cap structure. Activator protei...
The Dcp1:Dcp2 decapping complex catalyses the removal of the mRNA 5' cap structure. Activator protei...
International audienceIn eukaryotes, the elimination of the m7GpppN mRNA cap, a process known as dec...
Cellular mRNA levels are regulated via rates of transcription and decay. Since the removal of the mR...
The lifetime of eukaryotic messenger RNA is highly regulated by elements on both the 5' and 3' ends ...
Eukaryotic mRNAs contain a 5' cap structure that protects the transcript against rapid exonucleolyti...
5' mediated cytoplasmic RNA decay is a conserved cellular process in eukaryotes. While the functions...
The conserved decapping enzyme Dcp2 recognizes and removes the 5' eukaryotic cap from mRNA transcrip...
Messenger RNA degradation is a fundamental aspect of eukaryotic gene expression, regulation, and qua...
Crystal structures of enzymes are indispensable to understanding their mechanisms on a molecular lev...
Decapping by Dcp2 is an essential step in 5′-3 ′ mRNA decay. In yeast, decapping requires an open-to...
mRNA decapping irreversibly targets mRNAs for fast decay. Cap removal is catalyzed by decapping prot...
The removal of the 5'-cap structure by the decapping enzyme DCP2 and its coactivator DCP1 shuts down...
The removal of the mRNA 5' cap (decapping) by Dcp2 shuts down translation and commits mRNA to full d...
The removal of the 5' 7-methylguanosine mRNA cap structure (decapping) is a central step in the 5'-3...
The Dcp1:Dcp2 decapping complex catalyses the removal of the mRNA 5′ cap structure. Activator protei...
The Dcp1:Dcp2 decapping complex catalyses the removal of the mRNA 5' cap structure. Activator protei...
International audienceIn eukaryotes, the elimination of the m7GpppN mRNA cap, a process known as dec...
Cellular mRNA levels are regulated via rates of transcription and decay. Since the removal of the mR...
The lifetime of eukaryotic messenger RNA is highly regulated by elements on both the 5' and 3' ends ...
Eukaryotic mRNAs contain a 5' cap structure that protects the transcript against rapid exonucleolyti...
5' mediated cytoplasmic RNA decay is a conserved cellular process in eukaryotes. While the functions...
The conserved decapping enzyme Dcp2 recognizes and removes the 5' eukaryotic cap from mRNA transcrip...
Messenger RNA degradation is a fundamental aspect of eukaryotic gene expression, regulation, and qua...
Crystal structures of enzymes are indispensable to understanding their mechanisms on a molecular lev...
Decapping by Dcp2 is an essential step in 5′-3 ′ mRNA decay. In yeast, decapping requires an open-to...
mRNA decapping irreversibly targets mRNAs for fast decay. Cap removal is catalyzed by decapping prot...