Differential splice site pairing establishes alternative splicing patterns resulting in the generation of multiple mRNA isoforms. This process is carried out by the spliceosome, which is activated by a series of sequential structural rearrangements of its five core snRNPs. To determine when splice sites become functionally paired, we carried out a series of kinetic trap experiments using pre-mRNAs that undergo alternative 5' splice site selection or alternative exon inclusion. We show that commitment to splice site pairing in both cases occurs in the A complex, which is characterized by the ATP-dependent association of the U2 snRNP with the branch point. Interestingly, the timing of splice site pairing is independent of the intron or exon d...
During pre-mRNA splicing, a central step in the expression and regulation of eukaryotic genes, the s...
Understanding the molecular mechanisms that allow splice site selection is of fundamental importance...
Understanding the molecular mechanisms that allow splice site selection is of fundamental importance...
Differential splice site pairing establishes alternative splicing patterns resulting in the generati...
Differential splice site pairing establishes alternative splicing patterns resulting in the generati...
Spliceosomes are assembled in stages. The first stage forms complex E, which is characterized by the...
Spliceosomes are assembled in stages. The first stage forms complex E, which is characterized by the...
Spliceosomes are assembled in stages. The first stage forms complex E, which is characterized by the...
The selection of 3' splice sites (3?ss) is an essential early step in mammalian RNA splicing reactio...
We have analyzed the pathway of mammalian spliceosome assembly in vitro using a mobility retardation...
We have analyzed the pathway of mammalian spliceosome assembly in vitro using a mobility retardation...
Protein coding sequences in most eukaryotic pre-messenger RNAs (pre-mRNA) are interrupted by interve...
Protein coding sequences in most eukaryotic pre-messenger RNAs (pre-mRNA) are interrupted by interve...
We have analyzed the pathway of mammalian spliceosome assembly in vitro using a mobility retardation...
We have analyzed the pathway of mammalian spliceosome assembly in vitro using a mobility retardation...
During pre-mRNA splicing, a central step in the expression and regulation of eukaryotic genes, the s...
Understanding the molecular mechanisms that allow splice site selection is of fundamental importance...
Understanding the molecular mechanisms that allow splice site selection is of fundamental importance...
Differential splice site pairing establishes alternative splicing patterns resulting in the generati...
Differential splice site pairing establishes alternative splicing patterns resulting in the generati...
Spliceosomes are assembled in stages. The first stage forms complex E, which is characterized by the...
Spliceosomes are assembled in stages. The first stage forms complex E, which is characterized by the...
Spliceosomes are assembled in stages. The first stage forms complex E, which is characterized by the...
The selection of 3' splice sites (3?ss) is an essential early step in mammalian RNA splicing reactio...
We have analyzed the pathway of mammalian spliceosome assembly in vitro using a mobility retardation...
We have analyzed the pathway of mammalian spliceosome assembly in vitro using a mobility retardation...
Protein coding sequences in most eukaryotic pre-messenger RNAs (pre-mRNA) are interrupted by interve...
Protein coding sequences in most eukaryotic pre-messenger RNAs (pre-mRNA) are interrupted by interve...
We have analyzed the pathway of mammalian spliceosome assembly in vitro using a mobility retardation...
We have analyzed the pathway of mammalian spliceosome assembly in vitro using a mobility retardation...
During pre-mRNA splicing, a central step in the expression and regulation of eukaryotic genes, the s...
Understanding the molecular mechanisms that allow splice site selection is of fundamental importance...
Understanding the molecular mechanisms that allow splice site selection is of fundamental importance...