AbstractDEAD-box RNA helicases, defined by the sequence Asp–Glu–Ala–Asp (DEAD, in single-letter amino-acid code), regulate RNA unwinding and secondary structure in an ATP-dependent manner in vitro[1] and control mRNA stability and protein translation. Both yeast and mammals have large families of DEAD-box proteins, many of unknown function. We have disrupted a Dictyostelium discoideum gene, helC, which encodes helicase C, a member of the DEAD-box family of RNA helicases that shows strong homology to the product of the essential Saccharomyces cerevisiae gene dbp5[2] and to related helicases in mouse and Schizosaccharomyces pombe. The HelC protein also shows weaker homology to the translation initiation factor elF-4a. Other DEAD-box-containin...
Members of the DEAD box family of RNA helicases, which are characterised by the presence of twelve c...
The Saccharomyces cerevisiae genes PRP2, PRP16, and PRP22 encode pre-mRNA splicing factors that belo...
Gene expression in eukaryotes is highly complex. The central player in gene expression is the messen...
DEAD-box RNA helicases, defined by the sequence Asp–Glu–Ala–Asp (DEAD, in single-letter amino-acid c...
AbstractDEAD-box RNA helicases, defined by the sequence Asp–Glu–Ala–Asp (DEAD, in single-letter amin...
RNA helicases of the DEAD-box family are involved in essentially all RNA-dependent cellular processe...
The RNA helicase gene family encodes a group of eight homologous proteins that share regions of sequ...
AbstractSplicing factors belonging to the DEAD-box superfamily can affect RNA conformation in vitro....
SummaryDEAD-box RNA helicases, which regulate various processes involving RNA, have two RecA-like do...
AbstractDEAD-box proteins are ATP-dependent RNA helicases that function in various stages of RNA pro...
A previously uncharacterizedSaccharomyces cerevisiaegene,FAL1, was found by sequence comparison as a...
RNA helicases of the DEAD box family are present in all eukaryotic cells and in many bacteria and Ar...
DEAD-box helicase proteins accelerate folding and rearrangements of highly structured RNAs and RNA–p...
RNA structures that impede ribosome binding or subsequent scanning of the 5′-untranslated region (5′...
A previously uncharacterizedSaccharomyces cerevisiaeopen reading frame, YNR038W, was analyzed in the...
Members of the DEAD box family of RNA helicases, which are characterised by the presence of twelve c...
The Saccharomyces cerevisiae genes PRP2, PRP16, and PRP22 encode pre-mRNA splicing factors that belo...
Gene expression in eukaryotes is highly complex. The central player in gene expression is the messen...
DEAD-box RNA helicases, defined by the sequence Asp–Glu–Ala–Asp (DEAD, in single-letter amino-acid c...
AbstractDEAD-box RNA helicases, defined by the sequence Asp–Glu–Ala–Asp (DEAD, in single-letter amin...
RNA helicases of the DEAD-box family are involved in essentially all RNA-dependent cellular processe...
The RNA helicase gene family encodes a group of eight homologous proteins that share regions of sequ...
AbstractSplicing factors belonging to the DEAD-box superfamily can affect RNA conformation in vitro....
SummaryDEAD-box RNA helicases, which regulate various processes involving RNA, have two RecA-like do...
AbstractDEAD-box proteins are ATP-dependent RNA helicases that function in various stages of RNA pro...
A previously uncharacterizedSaccharomyces cerevisiaegene,FAL1, was found by sequence comparison as a...
RNA helicases of the DEAD box family are present in all eukaryotic cells and in many bacteria and Ar...
DEAD-box helicase proteins accelerate folding and rearrangements of highly structured RNAs and RNA–p...
RNA structures that impede ribosome binding or subsequent scanning of the 5′-untranslated region (5′...
A previously uncharacterizedSaccharomyces cerevisiaeopen reading frame, YNR038W, was analyzed in the...
Members of the DEAD box family of RNA helicases, which are characterised by the presence of twelve c...
The Saccharomyces cerevisiae genes PRP2, PRP16, and PRP22 encode pre-mRNA splicing factors that belo...
Gene expression in eukaryotes is highly complex. The central player in gene expression is the messen...