Crystal structures of enzymes are indispensable to understanding their mechanisms on a molecular level. It, however, remains challenging to determine which structures are adopted in solution, especially for dynamic complexes. Here, we study the bilobed decapping enzyme Dcp2 that removes the 5' cap structure from eukaryotic mRNA and thereby efficiently terminates gene expression. The numerous Dcp2 structures can be grouped into six states where the domain orientation between the catalytic and regulatory domains significantly differs. Despite this wealth of structural information it is not possible to correlate these states with the catalytic cycle or the activity of the enzyme. Using methyl transverse relaxation-optimized NMR spectroscopy, w...
Removal of the 5' cap on mRNA by the decapping enzyme Dcp2 is a critical step in 5'-to-3' mRNA decay...
Decapping by Dcp2 is an essential step in 5'-to-3' mRNA decay. In yeast, decapping requires an open-...
The lifetime of eukaryotic messenger RNA is highly regulated by elements on both the 5' and 3' ends ...
Crystal structures of enzymes are indispensable to understanding their mechanisms on a molecular lev...
Enzymes are dynamic molecular machines. Many insights into the molecular details of their function h...
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 conserved decapping enzyme Dcp2 recognizes and removes the 5' eukaryotic cap from mRNA transcrip...
SummaryRemoval of the 5′ cap structure by Dcp2 is a major step in several 5′–3′ mRNA decay pathways....
Eukaryotic mRNAs contain a 5' cap structure that protects the transcript against rapid exonucleolyti...
Removal of the 5' cap structure by Dcp2 is a major step in several 5'-3' mRNA decay pathways. The ac...
mRNA turnover represents a fundamental point of post-transcriptional control of gene expression in e...
Decapping by Dcp2 is an essential step in 5′-3 ′ mRNA decay. In yeast, decapping requires an open-to...
Regulation of mRNA half-life is a crucial control point of gene expression. Removal of the protecti...
Messenger RNA degradation is a fundamental aspect of eukaryotic gene expression, regulation, and qua...
Removal of the 5' cap on mRNA by the decapping enzyme Dcp2 is a critical step in 5'-to-3' mRNA decay...
Decapping by Dcp2 is an essential step in 5'-to-3' mRNA decay. In yeast, decapping requires an open-...
The lifetime of eukaryotic messenger RNA is highly regulated by elements on both the 5' and 3' ends ...
Crystal structures of enzymes are indispensable to understanding their mechanisms on a molecular lev...
Enzymes are dynamic molecular machines. Many insights into the molecular details of their function h...
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 conserved decapping enzyme Dcp2 recognizes and removes the 5' eukaryotic cap from mRNA transcrip...
SummaryRemoval of the 5′ cap structure by Dcp2 is a major step in several 5′–3′ mRNA decay pathways....
Eukaryotic mRNAs contain a 5' cap structure that protects the transcript against rapid exonucleolyti...
Removal of the 5' cap structure by Dcp2 is a major step in several 5'-3' mRNA decay pathways. The ac...
mRNA turnover represents a fundamental point of post-transcriptional control of gene expression in e...
Decapping by Dcp2 is an essential step in 5′-3 ′ mRNA decay. In yeast, decapping requires an open-to...
Regulation of mRNA half-life is a crucial control point of gene expression. Removal of the protecti...
Messenger RNA degradation is a fundamental aspect of eukaryotic gene expression, regulation, and qua...
Removal of the 5' cap on mRNA by the decapping enzyme Dcp2 is a critical step in 5'-to-3' mRNA decay...
Decapping by Dcp2 is an essential step in 5'-to-3' mRNA decay. In yeast, decapping requires an open-...
The lifetime of eukaryotic messenger RNA is highly regulated by elements on both the 5' and 3' ends ...