Results 161 to 170 of about 9,305 (205)
RNA Tailing by Nucleotidyltransferases in Plants: Mechanisms, Functions, and Biological Significance. [PDF]
Xu X +6 more
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ApaH decaps Np<sub>4</sub>N-capped RNAs in two alternative orientations. [PDF]
Nuthanakanti A +8 more
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Coronavirus NSP14 drives internal m7G modification to rewire host splicing and promote viral replication. [PDF]
Sáenz Altamirano EE +14 more
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N7-Methylguanosine Modification in Colorectal Cancer: Molecular Insights and Clinical Implications. [PDF]
Zhang Q +6 more
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Automated FLIM-FRET Segmentation Within RNP Condensates. [PDF]
Powell ND, Marcus JM, Fahim LE, Lee JE.
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Monitoring mRNA Decapping Activity
Methods, 1999mRNA decapping is a common step shared between two important mRNA decay pathways in yeast, Saccharomyces cerevisiae. To investigate how mRNAs are decapped, we have developed an assay that can be easily used to measure the decapping activity. This assay has been used to isolate yeast strains with altered decapping activities.
Stuart W Peltz +2 more
exaly +3 more sources
An essential component of the decapping enzyme required for normal rates of mRNA turnover
A MAJOR pathway of messenger RNA degradation in eukaryotic cells is initiated by shortening of the poly(A) tail, which, at least in yeast, triggers a decapping reaction, thereby exposing the mRNA to 5′→ 3′ degradation1–4.
Roy Parker, Audrey Stevens
exaly +3 more sources
mRNA decapping: finding the right structures [PDF]
In eukaryotes, the elimination of the m 7 GpppN mRNA cap, a process known as decapping, is a critical, largely irreversible and highly regulated step of mRNA decay that withdraws the targeted mRNAs from the pool of translatable templates. The decapping reaction is catalysed by a multi-protein
Marc Graille, Clement Charenton
exaly +4 more sources
Annual Review of Biochemistry, 2004
▪ Abstract Eukaryotic mRNAs are primarily degraded by removal of the 3′ poly(A) tail, followed either by cleavage of the 5′ cap structure (decapping) and 5′->3′ exonucleolytic digestion, or by 3′ to 5′ degradation. mRNA decapping represents a critical step in turnover because this permits the degradation of the mRNA and is a site of numerous ...
Jeff, Coller, Roy, Parker
openaire +2 more sources
▪ Abstract Eukaryotic mRNAs are primarily degraded by removal of the 3′ poly(A) tail, followed either by cleavage of the 5′ cap structure (decapping) and 5′->3′ exonucleolytic digestion, or by 3′ to 5′ degradation. mRNA decapping represents a critical step in turnover because this permits the degradation of the mRNA and is a site of numerous ...
Jeff, Coller, Roy, Parker
openaire +2 more sources

