Metazoan replication-dependent histone mRNAs accumulate to high levels during S phase as a result of an increase in the rate of histone gene transcription, pre-mRNA processing, and mRNA stability at the G1–S transition. However, relatively little is known about the contribution of these processes to histone expression in the cell cycles of early development, which often lack a G1 phase. In post-blastoderm Drosophila embryos, zygotic expression of the stgcdc25 phosphatase in G2 activates cyclin/cdc2 kinases and triggers mitosis. Here we show that histone transcription initiates in late G2 of cycle 14 in response to stgcdc25 and in anticipation of S phase of the next cycle, which occurs immediately following mitosis. Mutation of stgcdc25 arre...
AbstractBackground: Cell-cycle progression is tightly regulated during embryonic development. In the...
In Drosophila embryos, the mid-blastula transition (MBT) dramatically remodels the cell cycle during...
The duration of S phase in early embryos is often short, and then increases as development proceeds ...
Metazoan replication-dependent histone mRNAs accumulate to high levels during S phase as a result of...
AbstractMetazoan replication-dependent histone mRNAs accumulate to high levels during S phase as a r...
Replication-associated histone genes encode the only metazoan mRNAs that lack polyA tails, ending in...
In metazoans, the 3′ end of histone mRNA is not polyadenylated but instead ends with a stem-loop str...
Cyclin E/Cdk2 is necessary for replication-dependent histone mRNA biosynthesis, but how it controls ...
Cyclin E is an essential regulator of S phase entry. We have previously shown that transcriptional r...
Eukaryotes package DNA into nucleosomes that contain a core of histone proteins. During DNA replicat...
BackgroundMetazoan replication-dependent histone mRNAs terminate in a conserved stem-loop structure ...
Human embryonic stem (hES) cells have an abbreviated G1 phase of the cell cycle. How cells expedite ...
Pre-mRNA splicing, once thought to be a strictly posttranscriptional event in gene expression, is su...
Histones are essential for packaging DNA and maintaining genomic stability, with their expression ti...
Metazoan replication-dependent (RD) histone genes encode the only known cellular mRNAs that are not ...
AbstractBackground: Cell-cycle progression is tightly regulated during embryonic development. In the...
In Drosophila embryos, the mid-blastula transition (MBT) dramatically remodels the cell cycle during...
The duration of S phase in early embryos is often short, and then increases as development proceeds ...
Metazoan replication-dependent histone mRNAs accumulate to high levels during S phase as a result of...
AbstractMetazoan replication-dependent histone mRNAs accumulate to high levels during S phase as a r...
Replication-associated histone genes encode the only metazoan mRNAs that lack polyA tails, ending in...
In metazoans, the 3′ end of histone mRNA is not polyadenylated but instead ends with a stem-loop str...
Cyclin E/Cdk2 is necessary for replication-dependent histone mRNA biosynthesis, but how it controls ...
Cyclin E is an essential regulator of S phase entry. We have previously shown that transcriptional r...
Eukaryotes package DNA into nucleosomes that contain a core of histone proteins. During DNA replicat...
BackgroundMetazoan replication-dependent histone mRNAs terminate in a conserved stem-loop structure ...
Human embryonic stem (hES) cells have an abbreviated G1 phase of the cell cycle. How cells expedite ...
Pre-mRNA splicing, once thought to be a strictly posttranscriptional event in gene expression, is su...
Histones are essential for packaging DNA and maintaining genomic stability, with their expression ti...
Metazoan replication-dependent (RD) histone genes encode the only known cellular mRNAs that are not ...
AbstractBackground: Cell-cycle progression is tightly regulated during embryonic development. In the...
In Drosophila embryos, the mid-blastula transition (MBT) dramatically remodels the cell cycle during...
The duration of S phase in early embryos is often short, and then increases as development proceeds ...