The spliceosome excises introns from pre-mRNA in a two-step splicing reaction. So far, the three-dimensional (3D) structure of a spliceosome with preserved catalytic activity has remained elusive. Here, we determined the 3D structure of the human, catalytically active step I spliceosome (C complex) by cryo-electron microscopy (cryo-EM) in vitrified ice. Via immunolabeling we mapped the position of the 5′ exon. The C complex contains an unusually salt-stable ribonucleoprotein (RNP) core that harbors its catalytic center. We determined the 3D structure of this RNP core and also that of a post-step II particle, the 35S U5 snRNP, which contains most of the C complex core proteins. As C complex domains could be recognized in these structures, th...
Spliceosome assembly requires several structural rearrangements to position the components of the ca...
Spliceosome activation involves extensive protein and RNA rearrangements that lead to formation of a...
Spliceosomes are large, dynamic ribonucleoprotein complexes that catalyse the removal of introns fro...
The spliceosome excises introns from pre-mRNA in a two-step splicing reaction. So far, the three-dim...
Spliceosome rearrangements facilitated by RNA helicase PRP16 before catalytic step two of splicing a...
Little is known about the spliceosome's structure before its extensive remodeling into a catalytical...
The spliceosome is a highly dynamic macromolecular complex that precisely excises introns from pre-m...
Spliceosome rearrangements facilitated by RNA helicase PRP16 before catalytic step two of splicing a...
The spliceosome is formed on pre-mRNA substrates from five small nuclear ribonucleoprotein particles...
A first step in understanding the architecture of the spliceosome is elucidating the positions of in...
Pre-mRNA splicing is an essential step in eukaryotic gene expression. Splicing is catalyzed by the ...
Eukaryotic genes contain non-coding introns, removal of which during gene expression is a pre-requis...
Spliceosome assembly requires several structural rearrangements to position the components of the ca...
Pre-mRNA splicing occurs in two chemical steps that are catalyzed by a large, dynamic RNA-protein co...
Pre-mRNA splicing occurs in two chemical steps that are catalyzed by a large, dynamic RNA-protein co...
Spliceosome assembly requires several structural rearrangements to position the components of the ca...
Spliceosome activation involves extensive protein and RNA rearrangements that lead to formation of a...
Spliceosomes are large, dynamic ribonucleoprotein complexes that catalyse the removal of introns fro...
The spliceosome excises introns from pre-mRNA in a two-step splicing reaction. So far, the three-dim...
Spliceosome rearrangements facilitated by RNA helicase PRP16 before catalytic step two of splicing a...
Little is known about the spliceosome's structure before its extensive remodeling into a catalytical...
The spliceosome is a highly dynamic macromolecular complex that precisely excises introns from pre-m...
Spliceosome rearrangements facilitated by RNA helicase PRP16 before catalytic step two of splicing a...
The spliceosome is formed on pre-mRNA substrates from five small nuclear ribonucleoprotein particles...
A first step in understanding the architecture of the spliceosome is elucidating the positions of in...
Pre-mRNA splicing is an essential step in eukaryotic gene expression. Splicing is catalyzed by the ...
Eukaryotic genes contain non-coding introns, removal of which during gene expression is a pre-requis...
Spliceosome assembly requires several structural rearrangements to position the components of the ca...
Pre-mRNA splicing occurs in two chemical steps that are catalyzed by a large, dynamic RNA-protein co...
Pre-mRNA splicing occurs in two chemical steps that are catalyzed by a large, dynamic RNA-protein co...
Spliceosome assembly requires several structural rearrangements to position the components of the ca...
Spliceosome activation involves extensive protein and RNA rearrangements that lead to formation of a...
Spliceosomes are large, dynamic ribonucleoprotein complexes that catalyse the removal of introns fro...