AbstractAddition of poly(A) to the 3′ ends of cleaved pre-mRNA is essential for mRNA maturation and is catalyzed by Pap1 in yeast. We have previously shown that a non-viable Pap1 mutant lacking the first 18 amino acids is fully active for polyadenylation of oligoA, but defective for pre-mRNA polyadenylation, suggesting that interactions at the N-terminus are important for enzyme function in the processing complex. We have now identified proteins that interact specifically with this region. Cft1 and Pta1 are subunits of the cleavage/polyadenylation factor, in which Pap1 resides, and Nab6 and Sub1 are nucleic-acid binding proteins with known links to 3′ end processing. Our results suggest a novel mechanism for controlling Pap1 activity, and p...
The poly(A)-binding protein (PABP) is the major mRNA-binding protein in eukaryotes, and it is essent...
Biogenesis of most eukaryotic mRNAs involves the addition of an untemplated polyadenosine (pA) tail ...
SummaryWe report the 1.8 Å structure of yeast poly(A) polymerase (PAP) trapped in complex with ATP a...
AbstractAddition of poly(A) to the 3′ ends of cleaved pre-mRNA is essential for mRNA maturation and ...
International audiencePolyadenylation is the second step in 3' end formation of most eukaryotic mRNA...
AbstractWe have identified an essential gene, called FIP1, encoding a 327 amino acid protein interac...
In eukaryotic cells, newly synthesized mRNAs acquire a poly(A) tail that plays several fundamental r...
The poly(A) tail of an mRNA is believed to influence the initiation of translation, and the rate at ...
Almost all eukaryotic messenger RNAs (mRNAs) have a polyadenosine (polyA) tail at their 3′ end that ...
PAN, a yeast poly(A) nuclease, plays an important nuclear role in the posttranscriptional maturation...
Posttranscriptional maturation of the 3\u27 end of eukaryotic pre-mRNAs occurs as a three-step pathw...
AbstractPoly(A) binding protein (PABP) is an essential, well-conserved, multifunctional protein invo...
3’ end cleavage and polyadenylation are important steps in the maturation of eukaryotic mRNAs. Poly(...
Poly(A) polymerase (PAP) is the enzyme catalyzing the synthesis of the adenine tail to the 3’-end of...
All eukaryotic mRNAs of nuclear origin are modified with a 5' cap and a 3' poly(A) tail. These stru...
The poly(A)-binding protein (PABP) is the major mRNA-binding protein in eukaryotes, and it is essent...
Biogenesis of most eukaryotic mRNAs involves the addition of an untemplated polyadenosine (pA) tail ...
SummaryWe report the 1.8 Å structure of yeast poly(A) polymerase (PAP) trapped in complex with ATP a...
AbstractAddition of poly(A) to the 3′ ends of cleaved pre-mRNA is essential for mRNA maturation and ...
International audiencePolyadenylation is the second step in 3' end formation of most eukaryotic mRNA...
AbstractWe have identified an essential gene, called FIP1, encoding a 327 amino acid protein interac...
In eukaryotic cells, newly synthesized mRNAs acquire a poly(A) tail that plays several fundamental r...
The poly(A) tail of an mRNA is believed to influence the initiation of translation, and the rate at ...
Almost all eukaryotic messenger RNAs (mRNAs) have a polyadenosine (polyA) tail at their 3′ end that ...
PAN, a yeast poly(A) nuclease, plays an important nuclear role in the posttranscriptional maturation...
Posttranscriptional maturation of the 3\u27 end of eukaryotic pre-mRNAs occurs as a three-step pathw...
AbstractPoly(A) binding protein (PABP) is an essential, well-conserved, multifunctional protein invo...
3’ end cleavage and polyadenylation are important steps in the maturation of eukaryotic mRNAs. Poly(...
Poly(A) polymerase (PAP) is the enzyme catalyzing the synthesis of the adenine tail to the 3’-end of...
All eukaryotic mRNAs of nuclear origin are modified with a 5' cap and a 3' poly(A) tail. These stru...
The poly(A)-binding protein (PABP) is the major mRNA-binding protein in eukaryotes, and it is essent...
Biogenesis of most eukaryotic mRNAs involves the addition of an untemplated polyadenosine (pA) tail ...
SummaryWe report the 1.8 Å structure of yeast poly(A) polymerase (PAP) trapped in complex with ATP a...