Origin-specific initiation of mammalian nuclear DNA replication in a Xenopus cell-free system.
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Summary
It is shown that depletion of the Xenopus origin recognition complex subunit XORC2 from Xenopus egg extracts has no influence on the efficiency of replication or the pattern of initiation sites with either pre-ODP or post- ODP nuclei.
- Type
- review
- Published
- 1997-11-01
- Cited by
- 46
- References
- 37
- OpenAlex
- https://openalex.org/W1973737769
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:22418745
Keywords
Chinese hamster ovary cell, Biology, Origin recognition complex, Dihydrofolate reductase, DNA replication
References
- Defining origins of replication in mammalian cells.
- The Cell cycle : a practical approach
- Antibodies: A Laboratory Manual
- Characterization of the Xenopus replication licensing system.
- Replication of purified DNA in Xenopus egg extract is dependent on nuclear assembly.
- Position effects on the timing of replication of chromosomally integrated simian virus 40 molecules in Chinese hamster cells.
- Chromosomal replication initiates and terminates at random sequences but at regular intervals in the ribosomal DNA of Xenopus early embryos.
- Cell Cycle Control of DNA Replication
- 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 nuclear membrane prevents replication of human G2 nuclei but not G1 nuclei in Xenopus egg extract.
- Role for a Xenopus Orc2-related protein in controlling DNA replication
- DNA replication and its control.
- A Distinct G1 Step Required to Specify the Chinese Hamster DHFR Replication Origin
- The Xenopus Cdc6 protein is essential for the initiation of a single round of DNA replication in cell-free extracts.
- A lamin-independent pathway for nuclear envelope assembly
- Initiation of DNA replication in nuclei and purified DNA by a cell-free extract of Xenopus eggs.
- Bovine papilloma virus plasmids replicate randomly in mouse fibroblasts throughout S phase of the cell cycle.
- Reconstituted nuclei depleted of a vertebrate GLFG nuclear pore protein, p97, import but are defective in nuclear growth and replication
- Once and only once upon a time: specifying and regulating origins of DNA replication in eukaryotic cells.
Cited by
- Biochemische Studien über eukaryotische Replikations-Initiationsfaktoren
- Establishment and Characterisation of an in vitro Replication System with Human Cell Extracts
- Initiation of DNA replication in Saccharomyces cerevisiae G1‐phase nuclei by Xenopus egg extract
- Cell cycle‐dependent regulation of the association between origin recognition proteins and somatic cell chromatin
- DNA Replication in Protein Extracts from Human Cells Requires ORC and Mcm Proteins*
- Initiation of DNA replication in eukaryotic chromosomes
- Differential activation of intra-S-phase checkpoint in response to tripchlorolide and its effects on DNA replication
- Overexpression of ORC subunits and increased ORC‐chromatin association in transformed mammalian cells
- Replication origins in metazoan chromosomes: fact or fiction?
- Analysis of mammalian origin specification in ORC-depleted Xenopus egg extracts.
- Activation of DNA damage checkpoints in CHO cells requires a certain level of DNA damage.
- Analysis of the DNA replication competence of the xrs-5 mutant cells defective in Ku86
- Lovastatin arrests CHO cells between the origin decision point and the restriction point
- Heterochromatin, HP1 and methylation at lysine 9 of histone H3 in animals
- Evaluation of Mammalian Cell-free Systems of Nuclear Disassembly and Assembly
- Selective instability of Orc1 protein accounts for the absence of functional origin recognition complexes during the M–G1 transition in mammals
- Evidence for a mammalian late-G1 phase inhibitor of replication licensing distinct from geminin or Cdk activity
- Replication origins in yeast versus metazoa: separation of the haves and the have nots.
- Spatio‐temporal organization of DNA replication in murine embryonic stem, primary, and immortalized cells
- Isoform switching of Cdc6 contributes to developmental cell cycle remodeling.
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