The replication-dependent histone mRNAs are cell-cycle-regulated and expressed only during S phase. In contrast to all other eukaryotic mRNAs, the histone mRNAs end in a highly conserved 16-nucleotide stem–loop rather than a poly(A) tail. The stem–loop is necessary and sufficient for the post-transcriptional regulation of histone mRNA during the cell cycle. The histone mRNA 3′ stem–loop is bound by the stem–loop binding protein (SLBP) that is involved in pre-mRNA processing, translation, and stability of histone mRNA. Immunoprecipitation (IP) of RNA-binding proteins (RBPs) followed by microarray analysis has been used to identify the targets of RNA-binding proteins. This method is sometimes referred to as RIP-Chip (RNA IP followed by microa...
Metazoan replication-dependent histone mRNAs are not polyadenylated and instead end in a conserved s...
Replication-dependent histone mRNAs are the only eukaryotic cellular mRNAs that are not polyadenylat...
Metazoan cell cycle-regulated histone mRNAs are unique cellular mRNAs in that they terminate in a hi...
The replication-dependent histone mRNAs are cell-cycle-regulated and expressed only during S phase. ...
The animal replication-dependent (RD) histone mRNAs are coordinately regulated with chromosome repli...
Replication-dependent histone mRNAs are not polyadenylated but end in a conserved 26-nucleotide stru...
Histone mRNAs are the only eukaryotic cellular mRNAs that are not polyadenylated. Synthesis of matur...
The stem–loop binding protein (SLBP) binds the 3′ end of histone mRNA and is present both in nucleus...
The expression of the replication-dependent histone mRNAs is tightly regulated during the cell cycle...
The stem–loop binding protein (SLBP) binds the 3′ end of histone mRNA and is present both in nucleus...
Cell cycle-regulated histone mRNAs end in a conserved 26-nt sequence that can form a stem-loop with ...
In metazoans, the majority of histone proteins are generated from replication-dependent histone mRNA...
Metazoan replication-dependent histone mRNAs end in a conserved stem-loop rather than in the poly(A)...
Expression of replication-dependent histone genes at the posttranscriptional level is controlled by ...
The replication-dependent histone mRNAs, the only eukaryotic mRNAs that do not have poly(A) tails, a...
Metazoan replication-dependent histone mRNAs are not polyadenylated and instead end in a conserved s...
Replication-dependent histone mRNAs are the only eukaryotic cellular mRNAs that are not polyadenylat...
Metazoan cell cycle-regulated histone mRNAs are unique cellular mRNAs in that they terminate in a hi...
The replication-dependent histone mRNAs are cell-cycle-regulated and expressed only during S phase. ...
The animal replication-dependent (RD) histone mRNAs are coordinately regulated with chromosome repli...
Replication-dependent histone mRNAs are not polyadenylated but end in a conserved 26-nucleotide stru...
Histone mRNAs are the only eukaryotic cellular mRNAs that are not polyadenylated. Synthesis of matur...
The stem–loop binding protein (SLBP) binds the 3′ end of histone mRNA and is present both in nucleus...
The expression of the replication-dependent histone mRNAs is tightly regulated during the cell cycle...
The stem–loop binding protein (SLBP) binds the 3′ end of histone mRNA and is present both in nucleus...
Cell cycle-regulated histone mRNAs end in a conserved 26-nt sequence that can form a stem-loop with ...
In metazoans, the majority of histone proteins are generated from replication-dependent histone mRNA...
Metazoan replication-dependent histone mRNAs end in a conserved stem-loop rather than in the poly(A)...
Expression of replication-dependent histone genes at the posttranscriptional level is controlled by ...
The replication-dependent histone mRNAs, the only eukaryotic mRNAs that do not have poly(A) tails, a...
Metazoan replication-dependent histone mRNAs are not polyadenylated and instead end in a conserved s...
Replication-dependent histone mRNAs are the only eukaryotic cellular mRNAs that are not polyadenylat...
Metazoan cell cycle-regulated histone mRNAs are unique cellular mRNAs in that they terminate in a hi...