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1997 | 37 | 1-2 |

Tytuł artykułu

Isolation of the DNA fragment reflecting the open reading frame II of the I-18 C gene of Chironomus tentans by the polymerase chain reaction. V. Different mechanisms of regulation regarding the open reading frames

Autorzy

Treść / Zawartość

Warianty tytułu

Języki publikacji

EN

Abstrakty

EN
Different mechanisms of regulation regarding the Open Reading Frames (ORFs) have been discussed to have a broader perspective that is necessary to evaluate the role of the ORFs of the I-18 C gene. This consideration includes the ORF II of the I-18 C gene which is the object of the presented research.
PL
Omówiono różnorodne mechanizmy regulacji dotyczące Otwartych Ram Odczytu, w celu wytworzenia szerszego spojrzenia na to zagadnienie, które jest potrzebne do oceny roli poszczególnych Otwartych Ram Odczytu (ORF) genu I-18 C. Omówienie to dotyczy również ORF II genu I-18 C, co było przedmiotem zaprezentowanych badań.

Wydawca

-

Rocznik

Tom

37

Numer

1-2

Opis fizyczny

p.165-171

Twórcy

autor
  • Institute of Plant Protection, Miczurina 20, 60-318 Poznan, Poland

Bibliografia

  • 1. AIberts B., Bray D., Lewis J. Raff M., Roberts K., Watson J. D. 1989. Molecular Biology of the Cell. Second Edition. Garland Publishing, Inc., New York, London, 528-540.
  • 2. Amrein K., Dorsch- HäsIer K., Lutz B., Lezzi M. 1988. Two transcripts of the same ecdysterone-controlled gene are differentially associated with ribosomes. Gene, 65: 277-283.
  • 3. Amrein K., Lutz B., Hertner T., Lezzi M., Dorsch-HaesIer K. 1986. Complete DNA sequence of the ecdysterone-controlled gene I-18 C of Chironomus tentans. Nucl. Acids Res., 14: 7807-7808.
  • 4. Burtis K. C., ThummeI C. S., Jones C. W., Karim F. D., Hogness D. S. 1990. The Drosophila 74 EF Early Puff Conatins E74, a Complex Ecdysone-lnducible Gene That Encodes Two ets-Related Proteins. Cell, 61: 85-99.
  • 5. Dorsch- HäsIer K., Lutz B., SpindIer K. - D. , Lezzi M. 1990. Structural and develomental analysis of a gene cloned from the early ecdysterone-inducible puff site, I-18 C, in Chironomus tentans. Gene, 96: 233-239.
  • 6. Herbert T. P., BrierIey I., Brown T. D. K. 1996. Detection of the ORF3 polypeptide of feline calicivirus in infected cells and evidence for its expression from a single, functionally bicistronic, subgenomic mRNA. Journal of General Virology, 77: 123-127.
  • 7. Hertner T., Hertner - Meyer B., Sogo J. M., SchIäpfer G., JäckIe H., Edström J. E., Lezzi M. 1986. Microcloning of a long segment of a gene from the primary ecdysterone-controlled puff region I-18 C of Chironomus tentans: molecular characterization and effect of hormone on its transcription. Develop. Biol., 113: 29-39.
  • 8. Kozak M. 1978. How Do Eucaryotic Ribosomes Select Initiation Regions in Messenger RNA? Cell, 15: 1109-1123.
  • 9. Kozak M. 1980. Evaluation of the "Scanning Model" for Initiation of Protein Synthesis in Eucaryotes. Cell, 22: 7-8.
  • 10. Kozak M. 1984. Compilation and analysis of sequences upstream from the translational start site in eukaryotic mRNAs. Nucl. Acids Res., 12: 857-872.
  • 11. Kozak M. 1986. Point Mutations Define a Sequence Flanking the AUG Initiator Codon That Modulates Translation by Eukaryotic Ribosomes. Cell, 44: 283-292.
  • 12. Kozak M. 1986.Bifunctional Messenger RNAs in Eukaryotes. Cell, 47:481-483.
  • 13. Kozak M. 1987. Effects of lntercistronic Length on the Efficiency of Reinitiation by Eucaryotic Ribosomes. Mol. Cell. Biot. 7: 481-483.
  • 14. Kozak M. 1989. The Scanning Model for Translation: An Update. The Journal of Cell Biology, 108: 229-241.
  • 15. Kozak M. 1989. Circumstances and Mechanisms of lnhibition of Translation by Secondary Structure in Eucaryotic mRNAs. Mol. Cell. Biol., 5134-5142.
  • 16. Lezzi M., Lutz B., Dorsch-HaesIer K. 1989 b. The ecdysterone-controlled chromosome region I-18 C in C. tentans: from cytology to molecular biology. Acta Biol. Debr. Oecol. Hung., 2: 129-139.
  • 17. Lynch K. W., Maniatis T. 1995. Synergistic interactions between two distinct elements of a regulated splicing enhancer. Genes & Development, 9: 284-293.
  • 18. Matsufuji S., Matsufuji T., WiIIs N. M., GesteIand R. F., Atkins J. F. 1996. Reading two bases twice: mammalian antizyme frameshifting in yeast. The EMBO Journal, 15: 1360-1370.
  • 19. Mueller P. P., Hinnenbusch A. G. 1986. Multiple Upstream AUG Codons Mediate Translational Control of GCN4. Cell, 45: 201-207.
  • 20. Sun Q., Mayeda A., Hampson R. K., Krainer A. R., Rottman F. M. 1993. General splicing factor SF2/ASF promotes alternative splicing by binding to an exonic splicing enhancer. Genes & Development, 7: 2598-2608.
  • 21. ThummeI C. S., Burtis K. C., Hogness D. S. 1990. Spatial and Temporal Patterns of E74 Transcription during Drosophila Development. Cell, 61: 101-111.
  • 22. Werner M., Feller A., Messenguy F., Piérard A. 1987. The Leader Peptide of Yeast Gene CPA1 Is Essential for the Translational Repression of lts Expression. Cell, 49: 805-813

Typ dokumentu

Bibliografia

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bwmeta1.element.agro-article-b4a705b5-dce3-470d-ae69-3666845fd6fa
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