Literature DB >> 7061595

Amplified dihydrofolate reductase genes are located in chromosome regions containing DNA that replicates during the first half of S-phase.

R E Kellems, M E Harper, L M Smith.   

Abstract

To obtain a better understanding of the relationship between metaphase chromosome banding patterns and genome organization, attention was focused on regions of metaphase chromosomes that were found to contain the genes for a specific cellular enzyme, dihydrofolate reductase (DHFR). These studies involved the use of highly methotrexate-resistant mouse lymphoblastoid cells (L5178YR), which contain approximately 300 times the number of DHFR genes present in parental cells (L5178YS). Karyotypic analysis revealed the presence of two very large, nonhomologous, marker chromosomes that were absent in the parental line. In situ hybridization of 3H-labeled cloned DHFR cDNA to metaphase chromosomes of L5178YR cells was used to localize the DHFR genes to a very large Giemsa (G)-negative region on each of the two large marker chromosomes. Regional patterns of DNA replication in metaphase chromosomes were studied by autoradiographic visualization of [3H]thymidine incorporation and by fluorescent microscopic visualization of bromodeoxyuridine incorporation. Because the amplified DHFR genes were present within two prominent cytogenetic regions on two easily identifiable chromosomes, it was possible to observe the following. The amplified DHFR genes were located in chromosome regions that replicated at the same time during the first half of a 9-h-S-phase. DNA replication began simultaneously and terminated simultaneously at many locations throughout each amplified region. We conclude that transcriptionally active DHFR genes are located within large G-negative regions of metaphase chromosomes and that the DNA within these regions replicates during the first half of S-phase.

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Year:  1982        PMID: 7061595      PMCID: PMC2112057          DOI: 10.1083/jcb.92.2.531

Source DB:  PubMed          Journal:  J Cell Biol        ISSN: 0021-9525            Impact factor:   10.539


  51 in total

1.  The duration of replication of the inactive X chromosome in humans based on the persistence of the heterochromatic sex chromatin body during DNA synthesis.

Authors:  D E Comings
Journal:  Cytogenetics       Date:  1967

2.  Replication pattern of the X and Y chromosomes in partially synchronized human lymphocyte cultures.

Authors:  L A Knight; L Luzzatti
Journal:  Chromosoma       Date:  1973       Impact factor: 4.316

3.  Direction of DNA replication in mammalian cells.

Authors:  J A Huberman; A Tsai
Journal:  J Mol Biol       Date:  1973-03-25       Impact factor: 5.469

4.  Shift in buoyant density of DNA during the synthetic period and its relation to euchromatin and heterochromatin in mammalian cells.

Authors:  C J Bostock; D M Prescott
Journal:  J Mol Biol       Date:  1971-08-28       Impact factor: 5.469

5.  Kinetics of renaturation of DNA.

Authors:  J G Wetmur; N Davidson
Journal:  J Mol Biol       Date:  1968-02-14       Impact factor: 5.469

6.  On the mechanism of DNA replication in mammalian chromosomes.

Authors:  J A Huberman; A D Riggs
Journal:  J Mol Biol       Date:  1968-03-14       Impact factor: 5.469

7.  Deoxyribonucleic acid replication in synchronized cultured mammalian cells. I. Time of synthesis of molecules of different average uanine + cytosine content.

Authors:  A M Tobia; C L Schildkraut; J J Maio
Journal:  J Mol Biol       Date:  1970-12-28       Impact factor: 5.469

8.  Density gradient analysis of newly replicated DNA from synchronized mouse lymphoma cells.

Authors:  W G Flamm; N J Bernheim; P E Brubaker
Journal:  Exp Cell Res       Date:  1971-01       Impact factor: 3.905

9.  Late DNA replication pattern in human haemopoietic cells. A comparative investigation using a high resolution quantitative autoradiography.

Authors:  F Gavosto; L Pegoraro; P Masera; G Rovera
Journal:  Exp Cell Res       Date:  1968-02       Impact factor: 3.905

10.  Early- and late-replicating deoxyribonucleic acid complexes in HeLa nuclei.

Authors:  G C Mueller; K Kajiwara
Journal:  Biochim Biophys Acta       Date:  1966-01-18
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  3 in total

1.  Replication timing control can be maintained in extrachromosomally amplified genes.

Authors:  S M Carroll; J Trotter; G M Wahl
Journal:  Mol Cell Biol       Date:  1991-09       Impact factor: 4.272

2.  Regular pattern of karyotypic alterations accompanying gene amplification in Djungarian hamster cells: study of colchicine, adriablastin, and methotrexate resistance.

Authors:  B P Kopnin; J S Massino; A V Gudkov
Journal:  Chromosoma       Date:  1985       Impact factor: 4.316

3.  Replication of proto-oncogenes early during the S phase in mammalian cell lines.

Authors:  M A Iqbal; J Chinsky; V Didamo; C L Schildkraut
Journal:  Nucleic Acids Res       Date:  1987-01-12       Impact factor: 16.971

  3 in total

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