Massive zygotic transcription begins in many organisms during the midblastula transition when the cell cycle of the dividing egg slows down. A few genes are transcribed before this stage but how this differential activation is accomplished is still an open question. We have performed ChIP-seq experiments on tightly staged Drosophila embryos and show that massive recruitment of RNA polymerase II (Pol II) with widespread pausing occurs de novo during the midblastula transition. However, ∼100 genes are strongly occupied by Pol II before this timepoint and most of them do not show Pol II pausing, consistent with a requirement for rapid transcription during the fast nuclear cycles. This global change in Pol II pausing correlates with distinct c...
SummaryA conserved feature of the midblastula transition (MBT) is a requirement for a functional DNA...
Contemplating how a single cell can turn into the trillions of specialized cells that make a human b...
Contemplating how a single cell can turn into the trillions of specialized cells that make a human b...
Massive zygotic transcription begins in many organisms during the midblastula transition when the ce...
Limiting RNA polymerase II (Pol II) at various stages of the transcription cycle is critical for gen...
SummaryPoised RNA polymerase II (Pol II) is predominantly found at developmental control genes and i...
SummaryPaused RNA polymerase (Pol II) is a pervasive feature of Drosophila embryos and mammalian ste...
Transcriptionally engaged Pol II has been observed at many inactive genes, in a paused state. Since ...
Transcriptionally engaged Pol II has been observed at many inactive genes, in a paused state. Since ...
Abstract Core promoter types differ in the extent to which RNA polymerase II (Pol II) pauses after i...
SummaryPoised RNA polymerase II (Pol II) is predominantly found at developmental control genes and i...
Poised RNA polymerase II (Pol II) is predominantly found at developmental control genes and is thoug...
Recent genome-wide studies in metazoans have shown that RNA polymerase II (Pol II) accumulates to hi...
SummaryRecent genome-wide studies in metazoans have shown that RNA polymerase II (Pol II) accumulate...
Recent whole genome polymerase binding assays in the Drosophila embryo have shown that a substantial...
SummaryA conserved feature of the midblastula transition (MBT) is a requirement for a functional DNA...
Contemplating how a single cell can turn into the trillions of specialized cells that make a human b...
Contemplating how a single cell can turn into the trillions of specialized cells that make a human b...
Massive zygotic transcription begins in many organisms during the midblastula transition when the ce...
Limiting RNA polymerase II (Pol II) at various stages of the transcription cycle is critical for gen...
SummaryPoised RNA polymerase II (Pol II) is predominantly found at developmental control genes and i...
SummaryPaused RNA polymerase (Pol II) is a pervasive feature of Drosophila embryos and mammalian ste...
Transcriptionally engaged Pol II has been observed at many inactive genes, in a paused state. Since ...
Transcriptionally engaged Pol II has been observed at many inactive genes, in a paused state. Since ...
Abstract Core promoter types differ in the extent to which RNA polymerase II (Pol II) pauses after i...
SummaryPoised RNA polymerase II (Pol II) is predominantly found at developmental control genes and i...
Poised RNA polymerase II (Pol II) is predominantly found at developmental control genes and is thoug...
Recent genome-wide studies in metazoans have shown that RNA polymerase II (Pol II) accumulates to hi...
SummaryRecent genome-wide studies in metazoans have shown that RNA polymerase II (Pol II) accumulate...
Recent whole genome polymerase binding assays in the Drosophila embryo have shown that a substantial...
SummaryA conserved feature of the midblastula transition (MBT) is a requirement for a functional DNA...
Contemplating how a single cell can turn into the trillions of specialized cells that make a human b...
Contemplating how a single cell can turn into the trillions of specialized cells that make a human b...