Mitotic repression of transcription in vitro
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Summary
In vitro mitotic repression of transcription appears to be due to phosphorylation of a component of the transcription machinery by a mitotic protein kinase, either cdc2 kinase and/or a kinase activated by it.
- Type
- article
- Published
- 1993-02-01
- Cited by
- 88
- References
- 101
- OpenAlex
- https://openalex.org/W8381119
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:2415383
Keywords
Computer science
References
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- Evidence that the G1-S and G2-M transitions are controlled by different cdc2 proteins in higher eukaryotes.
- Formation in vitro of sperm pronuclei and mitotic chromosomes induced by amphibian ooplasmic components.
- The role of mitotic factors in regulating the timing of the midblastula transition in Xenopus.
- Coupling of mitosis to the completion of S phase in Xenopus occurs via modulation of the tyrosine kinase that phosphorylates p34cdc2.
- Characterization of two xenopus somatic 5S DNAs and one minor oocyte-specific 5S DNA.
- The CDC8 transcript is cell cycle regulated in yeast and is expressed coordinately with CDC9 and CDC21 at a point preceding histone transcription.
- Progression of the cell cycle through mitosis leads to abortion of nascent transcripts.
- Tails of RNA polymerase II.
- Cyclin is degraded by the ubiquitin pathway
- Association of p34cdc2 with replicating DNA.
- Ha-Ras augments c-Jun activity and stimulates phosphorylation of its activation domain
- Role of nucleosomal cores and histone H1 in regulation of transcription by RNA polymerase II.
- Variants of the TATA-binding protein can distinguish subsets of RNA polymerase I, II, and III promoters.
- The yeast DNA polymerase I transcript is regulated in both the mitotic cell cycle and in meiosis and is also induced after DNA damage
Cited by
- Inhibition of RNA polymerase III transcription by a ribosome-associated kinase activity.
- Identification and functional characterisation of novel APC/C interacting proteins
- In vivo studies of repressors of RNA polymerase III transcription
- Cooperative Action of Cdk1/cyclin B and SIRT1 Is Required for Mitotic Repression of rRNA Synthesis
- Cell cycle-dependent regulation of the human RNA cap methyltransferase (RNMT)
- The Identification and Characterisation of Novel Proteins and Metabolic Signalling Pathways that Regulate TRAIL-Induced Apoptosis
- A review of progress towards elucidating the role of protein kinase CK2 in polymerase III transcription: Regulation of the TATA binding protein
- Regulation of RNA polymerase I transcription in yeast and vertebrates.
- Cyclins and cyclin-dependent kinases: theme and variations.
- The regulation of RNA polymerase III transcription by protein kinase CK2
- Regulation of mammalian ribosomal gene transcription by RNA polymerase I.
- Cell and molecular biology of nucleolar assembly and disassembly.
- Regulation of HSF2 and its function in mitosis
- Repression of TFIIH Transcriptional Activity and TFIIH-Associated cdk7 Kinase Activity at Mitosis
- Regulation of Cyp1a1 induction by dioxin as a function of cell cycle phase.
- Role of maturation-promoting factor (p34cdc2-cyclin B) in differential expression of the Xenopus oocyte and somatic-type 5S RNA genes
- Highly Asynchronous and Asymmetric Cleavage Divisions Accompany Early Transcriptional Activity in Pre-Blastula Medaka Embryos
- TFIIIB is phosphorylated, disrupted and selectively released from tRNA promoters during mitosis in vivo
- Mitotic repression of RNA polymerase III transcription in vitro mediated by phosphorylation of a TFIIIB component.
- Assembly of U7 Small Nuclear Ribonucleoprotein Particle and Histone RNA 3′ Processing in Xenopus Egg Extracts*
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