Poly(A) binding protein (PAB1) is involved in a number of RNA metabolic functions in eukaryotic cells and correspondingly is suggested to associate with a number of proteins. We have used mass spectrometric analysis to identify 55 non-ribosomal proteins that specifically interact with PAB1 from Saccharomyces cerevisiae. Because many of these factors may associate only indirectly with PAB1 by being components of the PAB1-mRNP structure, we additionally conducted mass spectrometric analyses on seven metabolically defined PAB1 deletion derivatives to delimit the interactions between these proteins and PAB1. These latter analyses identified 13 proteins whose associations with PAB1 were reduced by deleting one or another of PAB1\u27s defined dom...
A growing body of evidence supports the existence of an extensive network of RNA-binding proteins (R...
All eukaryotic mRNAs of nuclear origin are modified with a 5' cap and a 3' poly(A) tail. These stru...
Post-transcriptional control of gene expression is critical for normal cellular function and viabil...
Poly(A) binding protein (PAB1) is involved in a number of RNA metabolic functions in eukaryotic cell...
Poly(A) binding protein (PAB1) is involved in a number of RNA metabolic functions in eukaryotic cell...
The poly(A) tail of an mRNA is believed to influence the initiation of translation, and the rate at ...
We have previously identified 55 nonribosomal proteins in PAB1‐mRNP complexes in Saccharomyces cerev...
We have previously identified 55 nonribosomal proteins in PAB1‐mRNP complexes in Saccharomyces cerev...
The poly(A)-binding protein PAB1 from the yeast Saccharomyces cerevisiae plays an important role in ...
The mRNA deadenylation process, catalyzed by the CCR4 deadenylase, is known to be the major factor c...
The mRNA deadenylation process, catalyzed by the CCR4 deadenylase, is known to be the major factor c...
The 3' poly(A) tail of eukaryotic mRNAs and the poly(A) binding protein (PABP) play key roles in th...
The poly(A)-binding protein (PABP) is the major mRNA-binding protein in eukaryotes, and it is essent...
In eukaryotic cells, newly synthesized mRNAs acquire a poly(A) tail that plays several fundamental r...
<div><p>Many protein interactions are conserved among organisms despite changes in the amino acid se...
A growing body of evidence supports the existence of an extensive network of RNA-binding proteins (R...
All eukaryotic mRNAs of nuclear origin are modified with a 5' cap and a 3' poly(A) tail. These stru...
Post-transcriptional control of gene expression is critical for normal cellular function and viabil...
Poly(A) binding protein (PAB1) is involved in a number of RNA metabolic functions in eukaryotic cell...
Poly(A) binding protein (PAB1) is involved in a number of RNA metabolic functions in eukaryotic cell...
The poly(A) tail of an mRNA is believed to influence the initiation of translation, and the rate at ...
We have previously identified 55 nonribosomal proteins in PAB1‐mRNP complexes in Saccharomyces cerev...
We have previously identified 55 nonribosomal proteins in PAB1‐mRNP complexes in Saccharomyces cerev...
The poly(A)-binding protein PAB1 from the yeast Saccharomyces cerevisiae plays an important role in ...
The mRNA deadenylation process, catalyzed by the CCR4 deadenylase, is known to be the major factor c...
The mRNA deadenylation process, catalyzed by the CCR4 deadenylase, is known to be the major factor c...
The 3' poly(A) tail of eukaryotic mRNAs and the poly(A) binding protein (PABP) play key roles in th...
The poly(A)-binding protein (PABP) is the major mRNA-binding protein in eukaryotes, and it is essent...
In eukaryotic cells, newly synthesized mRNAs acquire a poly(A) tail that plays several fundamental r...
<div><p>Many protein interactions are conserved among organisms despite changes in the amino acid se...
A growing body of evidence supports the existence of an extensive network of RNA-binding proteins (R...
All eukaryotic mRNAs of nuclear origin are modified with a 5' cap and a 3' poly(A) tail. These stru...
Post-transcriptional control of gene expression is critical for normal cellular function and viabil...