The spliceosome is the dynamic RNA-protein machine responsible for faithfully splicing introns from precursor messenger RNAs (pre-mRNAs). Many of the dynamic processes required for the proper assembly, catalytic activation, and disassembly of the spliceosome as it acts on its pre-mRNA substrate remain poorly understood, a challenge that persists for many biomolecular machines. Here, we developed a fluorescence-based Single Molecule Cluster Analysis (SiMCAn) tool to dissect the manifold conformational dynamics of a pre-mRNA through the splicing cycle. By clustering common dynamic behaviors derived from selectively blocked splicing reactions, SiMCAn was able to identify signature conformations and dynamic behaviors of multiple ATP-dependent i...
The spliceosome (SPL) is a majestic macromolecular machinery composed of five small nuclear RNAs and...
Eukaryotic genes contain non-coding introns, removal of which during gene expression is a pre-requis...
The vital role of RNA structure and dynamics in determining biological function is increasingly appr...
The spliceosome is the dynamic RNA-protein machine responsible for faithfully splicing introns from ...
The spliceosome is a multi-megadalton RNA-protein complex that catalyzes the removal of introns and ...
The spliceosome is a biomolecular machine that, in all eukaryotes, accomplishes site-specific splici...
The spliceosome is a complex small nuclear RNA (snRNA)-protein machine that removes introns from pre...
The spliceosome is a large RNA-protein complex that catalyzes pre-mRNA splicing by removing sequence...
The spliceosome is a complex machine composed of small nuclear ribonucleoproteins (snRNPs) and acces...
Spliceosomes catalyze the maturation of precursor mRNAs in organisms ranging from yeast to humans. T...
Removal of introns from the precursors to messenger RNA (pre-mRNAs) requires close apposition of int...
In eukaryotes, the spliceosome is a macromolecular ribonucleoprotein machine that excises introns fr...
Pre-mRNA splicing is an essential step in eukaryotic gene expression. Splicing is catalyzed by the ...
Tools to understand how the spliceosome functions in vivo have lagged behind advances in the st...
The spliceosome is a eukaryotic molecular machine composed of uridine-rich small nuclear RNAs (U snR...
The spliceosome (SPL) is a majestic macromolecular machinery composed of five small nuclear RNAs and...
Eukaryotic genes contain non-coding introns, removal of which during gene expression is a pre-requis...
The vital role of RNA structure and dynamics in determining biological function is increasingly appr...
The spliceosome is the dynamic RNA-protein machine responsible for faithfully splicing introns from ...
The spliceosome is a multi-megadalton RNA-protein complex that catalyzes the removal of introns and ...
The spliceosome is a biomolecular machine that, in all eukaryotes, accomplishes site-specific splici...
The spliceosome is a complex small nuclear RNA (snRNA)-protein machine that removes introns from pre...
The spliceosome is a large RNA-protein complex that catalyzes pre-mRNA splicing by removing sequence...
The spliceosome is a complex machine composed of small nuclear ribonucleoproteins (snRNPs) and acces...
Spliceosomes catalyze the maturation of precursor mRNAs in organisms ranging from yeast to humans. T...
Removal of introns from the precursors to messenger RNA (pre-mRNAs) requires close apposition of int...
In eukaryotes, the spliceosome is a macromolecular ribonucleoprotein machine that excises introns fr...
Pre-mRNA splicing is an essential step in eukaryotic gene expression. Splicing is catalyzed by the ...
Tools to understand how the spliceosome functions in vivo have lagged behind advances in the st...
The spliceosome is a eukaryotic molecular machine composed of uridine-rich small nuclear RNAs (U snR...
The spliceosome (SPL) is a majestic macromolecular machinery composed of five small nuclear RNAs and...
Eukaryotic genes contain non-coding introns, removal of which during gene expression is a pre-requis...
The vital role of RNA structure and dynamics in determining biological function is increasingly appr...