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PMID: 3480523 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Artificial combination of two cis-regulatory elements generates a unique pattern of expression in transgenic plants.

Strittmatter G, Chua NH

Abstract

We show that a 36-base-pair-long upstream fragment from the soybean hsp17.3-B gene comprising two partly overlapping heat-shock element (HSE)-like sequences can confer heat inducibility to a reporter gene in transgenic tobacco. The heat-shock response does not display organ specificity and is not affected by light. Insertion of these HSE-like elements into the pea rbcS-3A 5' flanking fragment (position -410 to +15) either at position -410 (5' to the enhancer) or at position -49 (between the enhancer and the "TATA" box) renders the transcript level of the reporter gene light-inducible and organ-specific under heat-shock conditions. These results demonstrate the possibility of generating a unique pattern of expression (e.g., light-dependent and organ-specific heat-shock response) by artificial combination of appropriate cis-acting regulatory elements. Moreover, by using the HSE-like sequences as a weak heat-inducible enhancer in the chimeric regulatory regions we uncover the function of negative elements within the pea rbcS-3A upstream region. These negative elements are responsible for a repressed transcript level in roots as well as in dark-adapted leaves. Therefore, the upstream fragment containing two HSE-like elements can be considered a useful tool to test the function of other cis-acting elements.

MeSH Terms
Gene Expression Regulation/radiation effects Heat-Shock Proteins/genetics Hot Temperature Light Plant Proteins/genetics Plants, Toxic Regulatory Sequences, Nucleic Acid Tissue Distribution Tobacco/genetics Transcription Factors/physiology Transfection
Chemicals
Heat-Shock Proteins Plant Proteins Transcription Factors
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Strittmatter G
Laboratory of Plant Molecular Biology, Rockefeller University, New York, NY 10021-6399.
Chua N H
References (32)
32 references, click to expand
  1. Expression dynamics of the pea rbcS multigene family and organ distribution of the transcripts.
    EMBO J. 1986 Sep;5(9):2063-2071 PMID: 16453702
  2. Organ-specific and light-induced expression of plant genes.
    Science. 1986 May 30;232(4754):1106-12 PMID: 17754498
  3. Upstream elements necessary for optimal function of the hsp 70 promoter in transformed flies.
    Cell. 1984 Sep;38(2):391-8 PMID: 6432342
  4. Phytochrome-controlled expression of a wheat Cab gene in transgenic tobacco seedlings.
    EMBO J. 1986 Jun;5(6):1119-24 PMID: 15966098
  5. An exonuclease protection assay reveals heat-shock element and TATA box DNA-binding proteins in crude nuclear extracts.
    Nature. 1985 Sep 5-11;317(6032):84-7 PMID: 2993917
  6. Activation of the Drosophila hsp27 promoter by heat shock and by ecdysone involves independent and remote regulatory sequences.
    EMBO J. 1986 Jul;5(7):1653-8 PMID: 16453691
  7. Sequences in the pea rbcS-3A gene have homology to constitutive mammalian enhancers but function as negative regulatory elements.
    Genes Dev. 1987 May;1(3):247-55 PMID: 2890552
  8. Heat shock regulatory elements function as an inducible enhancer in the Xenopus hsp70 gene and when linked to a heterologous promoter.
    Cell. 1986 Jun 6;45(5):753-60 PMID: 3085957
  9. The 5' ends of Drosophila heat shock genes in chromatin are hypersensitive to DNase I.
    Nature. 1980 Aug 28;286(5776):854-60 PMID: 6774262
  10. Two protein-binding sites in chromatin implicated in the activation of heat-shock genes.
    Nature. 1984 May 17-23;309(5965):229-34 PMID: 6325944
  11. Characterization of DNA sequences through which cadmium and glucocorticoid hormones induce human metallothionein-IIA gene.
    Nature. 1984 Apr 5-11;308(5959):513-9 PMID: 6323998
  12. A Drosophila RNA polymerase II transcription factor contains a promoter-region-specific DNA-binding activity.
    Cell. 1984 Feb;36(2):357-69 PMID: 6537904
  13. Sequence requirement for expression of the Drosophila melanogaster heat shock protein hsp22 gene during heat shock and normal development.
    Mol Cell Biol. 1986 Jun;6(6):2011-9 PMID: 3097507
  14. A CCAAT box confers cell-type-specific regulation on the Xenopus hsp70 gene in oocytes.
    Cell. 1986 Sep 26;46(7):1037-42 PMID: 3757032
  15. Developmental regulation of two genes encoding ribulose-bisphosphate carboxylase small subunit in pea and transgenic petunia plants: Phytochrome response and blue-light induction.
    Proc Natl Acad Sci U S A. 1986 Apr;83(8):2358-62 PMID: 16593682
  16. The distal transcription signals of the herpesvirus tk gene share a common hexanucleotide control sequence.
    Cell. 1984 May;37(1):253-62 PMID: 6233005
  17. The heat-shock response.
    Annu Rev Biochem. 1986;55:1151-91 PMID: 2427013
  18. Developmental regulation by an enhancer from the Sgs-4 gene of Drosophila.
    EMBO J. 1987 Jan;6(1):207-14 PMID: 16453749
  19. Identification of a sequence element in the promoter of the Drosophila melanogaster hsp23 gene that is required for its heat activation.
    EMBO J. 1985 Nov;4(11):2971-6 PMID: 2998770
  20. pEMBL: a new family of single stranded plasmids.
    Nucleic Acids Res. 1983 Mar 25;11(6):1645-55 PMID: 6300771
  21. Identification of DNA sequences required for activity of the cauliflower mosaic virus 35S promoter.
    Nature. 1985 Feb 28-Mar 6;313(6005):810-2 PMID: 3974711
  22. A simple and general method for transferring genes into plants.
    Science. 1985 Mar 8;227(4691):1229-31 PMID: 17757866
  23. Heat shock and ecdysterone activation of the Drosophila melanogaster hsp23 gene; a sequence element implied in developmental regulation.
    EMBO J. 1986 Jul;5(7):1667-73 PMID: 3091364
  24. Separate regulatory elements for the heat-inducible and ovarian expression of the Drosophila hsp26 gene.
    Cell. 1985 Dec;43(3 Pt 2):737-46 PMID: 3935329
  25. A synthetic heat-shock promoter element confers heat-inducibility on the herpes simplex virus thymidine kinase gene.
    EMBO J. 1982;1(11):1473-7 PMID: 6327271
  26. The DNA sequence analysis of soybean heat-shock genes and identification of possible regulatory promoter elements.
    EMBO J. 1984 Nov;3(11):2491-7 PMID: 16453563
  27. Glutamine synthetase genes are regulated by ammonia provided externally or by symbiotic nitrogen fixation.
    EMBO J. 1987 May;6(5):1167-71 PMID: 16453762
  28. Several hundred base pairs upstream of Drosophila hsp23 and 26 genes are required for their heat induction in transformed flies.
    EMBO J. 1986 Apr;5(4):755-61 PMID: 3011424
  29. Translational regulation of protein synthesis, in response to light, at a critical stage of Volvox development.
    Cell. 1985 Jun;41(2):419-28 PMID: 3986908
  30. Upstream sequences required for efficient expression of a soybean heat shock gene.
    Mol Cell Biol. 1986 Feb;6(2):559-65 PMID: 3023855
  31. Organization of the Drosophila melanogaster hsp70 heat shock regulation unit.
    Mol Cell Biol. 1987 Mar;7(3):1055-62 PMID: 3104769
  32. A regulatory upstream promoter element in the Drosophila hsp 70 heat-shock gene.
    Cell. 1982 Sep;30(2):517-28 PMID: 6814763
Article Info
Journal
Proceedings of the National Academy of Sciences of the United States of America
Abbr.
Proc Natl Acad Sci U S A
ISSN
0027-8424
Published
1987-12-00
Pages
8986-90
Language
English
Region
United States
NLM ID
7505876
PMCID
PMC299676
Subset
IM
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