The spliceosome (SPL) is a majestic macromolecular machinery composed of five small nuclear RNAs and hundreds of proteins. SPL removes noncoding introns from precursor messenger RNAs (pre-mRNAs) and ligates coding exons, giving rise to functional mRNAs. Building on the first SPL structure solved at near–atomic-level resolution, here we elucidate the functional dynamics of the intron lariat spliceosome (ILS) complex through multi-microsecond-long molecular-dynamics simulations of ∼1,000,000 atoms models. The ILS essential dynamics unveils (i) the leading role of the Spp42 protein, which heads the gene maturation by tuning the motions of distinct SPL components, and (ii) the critical participation of the Cwf19 protein in displacing the intron...
Spliceosomes are multi-megadalton RNA-protein molecular machines that carry out pre-mRNA splicing, t...
One of the most amazing findings in molecular biology was the discovery that eukaryotic genes are di...
Although U snRNAs play essential roles in splicing, little is known about the 3D arrangement of U2, ...
The spliceosome (SPL) is a majestic macromolecular machinery composed of five small nuclear RNAs and...
Intron removal from premature-mRNA (pre-mRNA splicing) is an essential part of gene expression and r...
ConspectusIntron removal from premature-mRNA (pre-mRNA splicing) is an essential part of gene expres...
SUMMARYThe spliceosome is a highly complex, dynamic ribonucleoprotein molecular machine that undergo...
Eukaryotic genes contain non-coding introns, removal of which during gene expression is a pre-requis...
Intron splicing of a nascent mRNA transcript by spliceosome (SPL) is a hallmark of gene regulation i...
International audienceIntron splicing of a nascent messenger RNA transcript by spliceosome (SPL) is ...
The spliceosome is a eukaryotic molecular machine composed of uridine-rich small nuclear RNAs (U snR...
The intron–exon organization of the genes is nowadays taken for granted and constitutes a fully esta...
The spliceosome is formed on pre-mRNA substrates from five small nuclear ribonucleoprotein particles...
Tools to understand how the spliceosome functions in vivo have lagged behind advances in the st...
Spliceosomes are multi-megadalton RNA-protein molecular machines that carry out pre-mRNA splicing, t...
Spliceosomes are multi-megadalton RNA-protein molecular machines that carry out pre-mRNA splicing, t...
One of the most amazing findings in molecular biology was the discovery that eukaryotic genes are di...
Although U snRNAs play essential roles in splicing, little is known about the 3D arrangement of U2, ...
The spliceosome (SPL) is a majestic macromolecular machinery composed of five small nuclear RNAs and...
Intron removal from premature-mRNA (pre-mRNA splicing) is an essential part of gene expression and r...
ConspectusIntron removal from premature-mRNA (pre-mRNA splicing) is an essential part of gene expres...
SUMMARYThe spliceosome is a highly complex, dynamic ribonucleoprotein molecular machine that undergo...
Eukaryotic genes contain non-coding introns, removal of which during gene expression is a pre-requis...
Intron splicing of a nascent mRNA transcript by spliceosome (SPL) is a hallmark of gene regulation i...
International audienceIntron splicing of a nascent messenger RNA transcript by spliceosome (SPL) is ...
The spliceosome is a eukaryotic molecular machine composed of uridine-rich small nuclear RNAs (U snR...
The intron–exon organization of the genes is nowadays taken for granted and constitutes a fully esta...
The spliceosome is formed on pre-mRNA substrates from five small nuclear ribonucleoprotein particles...
Tools to understand how the spliceosome functions in vivo have lagged behind advances in the st...
Spliceosomes are multi-megadalton RNA-protein molecular machines that carry out pre-mRNA splicing, t...
Spliceosomes are multi-megadalton RNA-protein molecular machines that carry out pre-mRNA splicing, t...
One of the most amazing findings in molecular biology was the discovery that eukaryotic genes are di...
Although U snRNAs play essential roles in splicing, little is known about the 3D arrangement of U2, ...