The Ski2-like RNA helicase Brr2 is a core component of the spliceosome that must be tightly regulated to ensure correct timing of spliceosome activation. Little is known about mechanisms of regulation of Ski2-like helicases by protein cofactors. Here we show by crystal structure and biochemical analyses that the Prp8 protein, a major regulator of the spliceosome, can insert its C-terminal tail into Brr2's RNA-binding tunnel, thereby intermittently blocking Brr2's RNA-binding, adenosine triphosphatase, and U4/U6 unwinding activities. Inefficient Brr2 repression is the only recognizable phenotype associated with certain retinitis pigmentosa-linked Prp8 mutations that map to its C-terminal tail. Our data show how a Ski2-like RNA helicase can b...
Brr2 is a DExD/H-box helicase responsible for U4/U6 unwinding during spliceosomal activation. Brr2 c...
The intrinsically unstructured C9ORF78 protein was detected in spliceosomes but its role in splicing...
Mechanism of regulation of spliceosome activation by Brr2 and Prp8 and links to retinal diseas
The Ski2-like RNA helicase Brr2 is a core component of the spliceosome that must be tightly regulate...
For each round of pre-mRNA splicing, a spliceosome is assembled anew on its substrate. RNA-protein r...
The spliceosome is a highly dynamic machine requiring multiple RNA-dependent ATPases of the DExD/H-b...
RNA helicase Brr2 is implicated in multiple phases of pre-mRNA splicing and thus requires tight regu...
The Brr2 helicase provides the key remodeling activity for spliceosome catalytic activation, during ...
The spliceosomal RNA helicase Brr2 catalyzes unwinding of the U4/U6 snRNA duplex, an essential step ...
International audienceRNA helicases are essential for virtually all cellular processes, however, the...
The spliceosome is a highly dynamic machine requiring multiple RNA-dependent ATPases of the DExD/H-b...
The RNA helicase bad response to refrigeration 2 homolog BRR2 is required for the activation of th...
The Brr2 RNA helicase disrupts the U4/U6 di-small nuclear RNA-protein complex (di-snRNP) during spli...
The dynamic rearrangements of RNA and protein complexes and the fidelity of pre-mRNA splicing are go...
Brr2 is a DExD/H-box helicase responsible for U4/U6 unwinding during spliceosomal activation. Brr2 c...
Brr2 is a DExD/H-box helicase responsible for U4/U6 unwinding during spliceosomal activation. Brr2 c...
The intrinsically unstructured C9ORF78 protein was detected in spliceosomes but its role in splicing...
Mechanism of regulation of spliceosome activation by Brr2 and Prp8 and links to retinal diseas
The Ski2-like RNA helicase Brr2 is a core component of the spliceosome that must be tightly regulate...
For each round of pre-mRNA splicing, a spliceosome is assembled anew on its substrate. RNA-protein r...
The spliceosome is a highly dynamic machine requiring multiple RNA-dependent ATPases of the DExD/H-b...
RNA helicase Brr2 is implicated in multiple phases of pre-mRNA splicing and thus requires tight regu...
The Brr2 helicase provides the key remodeling activity for spliceosome catalytic activation, during ...
The spliceosomal RNA helicase Brr2 catalyzes unwinding of the U4/U6 snRNA duplex, an essential step ...
International audienceRNA helicases are essential for virtually all cellular processes, however, the...
The spliceosome is a highly dynamic machine requiring multiple RNA-dependent ATPases of the DExD/H-b...
The RNA helicase bad response to refrigeration 2 homolog BRR2 is required for the activation of th...
The Brr2 RNA helicase disrupts the U4/U6 di-small nuclear RNA-protein complex (di-snRNP) during spli...
The dynamic rearrangements of RNA and protein complexes and the fidelity of pre-mRNA splicing are go...
Brr2 is a DExD/H-box helicase responsible for U4/U6 unwinding during spliceosomal activation. Brr2 c...
Brr2 is a DExD/H-box helicase responsible for U4/U6 unwinding during spliceosomal activation. Brr2 c...
The intrinsically unstructured C9ORF78 protein was detected in spliceosomes but its role in splicing...
Mechanism of regulation of spliceosome activation by Brr2 and Prp8 and links to retinal diseas