The protein SF3B1 is a core component of the spliceosome, the large ribonucleoprotein complex responsible for pre-mRNA splicing. Interest in SF3B1 intensified when tumor exome sequencing revealed frequent specific SF3B1 mutations in a variety of neoplasia and when SF3B1 was identified as the target of three different cancer cell growth inhibitors. A better mechanistic understanding of SF3B1's role in splicing is required to capitalize on these discoveries. Using the inhibitor compounds, we probed SF3B1 function in the spliceosome in an in vitro splicing system. Formerly, the inhibitors were shown to block early steps of spliceosome assembly, consistent with a previously determined role of SF3B1 in intron recognition. We now report that SF3B...
In eukaryotes, a crucial step in gene expression is pre-mRNA splicing by the spliceosome. The splice...
Pre-mRNA splicing in eukaryotes is performed by the spliceosome, a highly complex macromolecular mac...
The spliceosome is the macromolecular machine responsible for pre-mRNA splicing, an essential step i...
The protein SF3B1 is a core component of the spliceosome, the large ribonucleoprotein complex respon...
Small molecule inhibitors that target components of the spliceosome have great potential as tools to...
The spliceosome is a dynamic ribonucleo-protein complex that is in charge of removing introns from p...
Small molecules that target the spliceosome SF3B complex are potent inhibitors of cancer cell growth...
The SF3B1 protein, part of the SF3b complex, recognizes the intron branch point sequence of precurso...
SummaryMuch remains unknown concerning the mechanism by which the splicing machinery pinpoints short...
Splicing modulators (SMs) pladienolides, herboxidienes, and spliceostatins exert their antitumor act...
Much remains unknown concerning the mechanism by which the splicing machinery pinpoints short exons ...
Much remains unknown concerning the mechanism by which the splicing machinery pinpoints short exons ...
SF3B is a multi-protein complex essential for branch site (BS) recognition and selection during pre-...
Pre-mRNA splicing is catalyzed by the large ribonucleoprotein spliceosome. Spliceosome assembly is a...
Pre-mRNA splicing is catalyzed by the large ribonucleoprotein spliceosome. Spliceosome assembly is a...
In eukaryotes, a crucial step in gene expression is pre-mRNA splicing by the spliceosome. The splice...
Pre-mRNA splicing in eukaryotes is performed by the spliceosome, a highly complex macromolecular mac...
The spliceosome is the macromolecular machine responsible for pre-mRNA splicing, an essential step i...
The protein SF3B1 is a core component of the spliceosome, the large ribonucleoprotein complex respon...
Small molecule inhibitors that target components of the spliceosome have great potential as tools to...
The spliceosome is a dynamic ribonucleo-protein complex that is in charge of removing introns from p...
Small molecules that target the spliceosome SF3B complex are potent inhibitors of cancer cell growth...
The SF3B1 protein, part of the SF3b complex, recognizes the intron branch point sequence of precurso...
SummaryMuch remains unknown concerning the mechanism by which the splicing machinery pinpoints short...
Splicing modulators (SMs) pladienolides, herboxidienes, and spliceostatins exert their antitumor act...
Much remains unknown concerning the mechanism by which the splicing machinery pinpoints short exons ...
Much remains unknown concerning the mechanism by which the splicing machinery pinpoints short exons ...
SF3B is a multi-protein complex essential for branch site (BS) recognition and selection during pre-...
Pre-mRNA splicing is catalyzed by the large ribonucleoprotein spliceosome. Spliceosome assembly is a...
Pre-mRNA splicing is catalyzed by the large ribonucleoprotein spliceosome. Spliceosome assembly is a...
In eukaryotes, a crucial step in gene expression is pre-mRNA splicing by the spliceosome. The splice...
Pre-mRNA splicing in eukaryotes is performed by the spliceosome, a highly complex macromolecular mac...
The spliceosome is the macromolecular machine responsible for pre-mRNA splicing, an essential step i...