The Brr2 RNA helicase disrupts the U4/U6 di-small nuclear RNA-protein complex (di-snRNP) during spliceosome activation via ATP-driven translocation on the U4 snRNA strand. However, it is unclear how bound proteins influence U4/U6 unwinding, which regions of the U4/U6 duplex the helicase actively unwinds, and whether U4/U6 components are released as individual molecules or as sub-complexes. Here, we set up a recombinant Brr2-mediated U4/U6 di-snRNP disruption system, showing that sequential addition of the U4/U6 proteins small nuclear ribonucleoprotein-associated protein 1 (Snu13), pre-mRNA processing factor 31 (Prp31), and Prp3 to U4/U6 di-snRNA leads to a stepwise decrease of Brr2-mediated U4/U6 unwinding, but that unwinding is largely res...
Biogenesis of spliceosomal small nuclear ribonucleoproteins snRNPs and their recycling after splic...
Prp3 is an essential U4/U6 di-snRNP-associated protein whose functions and molecular mechanisms in p...
textIn addressing the pre-mRNA substrate, the splicing machinery requires rearrangement of multiple ...
The Brr2 RNA helicase disrupts the U4/U6 di-small nuclear RNA-protein complex (di-snRNP) during spli...
The spliceosomal RNA helicase Brr2 catalyzes unwinding of the U4/U6 snRNA duplex, an essential step ...
AbstractBackground: The dynamic rearrangements of RNA structure which occur during pre-mRNA splicing...
The spliceosome is a highly dynamic machine requiring multiple RNA-dependent ATPases of the DExD/H-b...
The Brr2 helicase provides the key remodeling activity for spliceosome catalytic activation, during ...
Assembly of a spliceosome, catalyzing precursor–messenger RNA splicing, involves multiple RNA–protei...
The Brr2 helicase provides the key remodeling activity for spliceosome catalytic activation, during ...
The spliceosome is a large molecular machine that serves to remove the intervening sequences that ar...
Precursor messenger RNA splicing is catalyzed by a dynamic complex termed the spliceosome. An essent...
Biogenesis of spliceosomal small nuclear ribonucleoproteins (snRNPs) and their recycling after splic...
Brr2 is a DExD/H-box helicase responsible for U4/U6 unwinding during spliceosomal activation. Brr2 c...
The spliceosome is a single-turnover enzyme that needs to be dismantled after catalysis to both rele...
Biogenesis of spliceosomal small nuclear ribonucleoproteins snRNPs and their recycling after splic...
Prp3 is an essential U4/U6 di-snRNP-associated protein whose functions and molecular mechanisms in p...
textIn addressing the pre-mRNA substrate, the splicing machinery requires rearrangement of multiple ...
The Brr2 RNA helicase disrupts the U4/U6 di-small nuclear RNA-protein complex (di-snRNP) during spli...
The spliceosomal RNA helicase Brr2 catalyzes unwinding of the U4/U6 snRNA duplex, an essential step ...
AbstractBackground: The dynamic rearrangements of RNA structure which occur during pre-mRNA splicing...
The spliceosome is a highly dynamic machine requiring multiple RNA-dependent ATPases of the DExD/H-b...
The Brr2 helicase provides the key remodeling activity for spliceosome catalytic activation, during ...
Assembly of a spliceosome, catalyzing precursor–messenger RNA splicing, involves multiple RNA–protei...
The Brr2 helicase provides the key remodeling activity for spliceosome catalytic activation, during ...
The spliceosome is a large molecular machine that serves to remove the intervening sequences that ar...
Precursor messenger RNA splicing is catalyzed by a dynamic complex termed the spliceosome. An essent...
Biogenesis of spliceosomal small nuclear ribonucleoproteins (snRNPs) and their recycling after splic...
Brr2 is a DExD/H-box helicase responsible for U4/U6 unwinding during spliceosomal activation. Brr2 c...
The spliceosome is a single-turnover enzyme that needs to be dismantled after catalysis to both rele...
Biogenesis of spliceosomal small nuclear ribonucleoproteins snRNPs and their recycling after splic...
Prp3 is an essential U4/U6 di-snRNP-associated protein whose functions and molecular mechanisms in p...
textIn addressing the pre-mRNA substrate, the splicing machinery requires rearrangement of multiple ...