Control of gene expression in eukaryotic cells
DNA constructs and other compositions and methods for controlling gene expression in eukaryotic cells and organisms are derived from bacterial quorum sensing systems. One or more cis elements from the luxI promoter (“lux box”) or a functionally similar sequence are incorporated in a eukaryotic promoter. A receptor protein from the LuxR family of transcriptional regulators, upon binding an acylated homoserine lactone (AHL) compound, interacts with the lux box, modulating the activity of the promoter.
1. A eukaryotic cell comprising
a first sequence comprising a first promoter that is functional in a eukaryotic cell comprising an AHL (acylated homoserine lactone)-response element;
a second sequence comprising a second promoter that is functional in the cell comprising an AHL-response element operably linked to a sequence encoding an AHL synthase that, when expressed in the eukaryotic cell, synthesizes an AHL; and
a third sequence comprising a third promoter that is functional in the cell operably linked to a sequence encoding an AHL receptor.
2. The cell of claim 1 , wherein the cell is a plant cell.
3. The cell of claim 1 , wherein the first sequence is operably linked to a gene of interest.
4. The cell of claim 1 , wherein the binding of an AHL by the AHL receptor causes the AHL receptor to bind to the AHL-response element and modulate transcription of the promoter in the first sequence.
5. The cell of claim 1 , wherein at least one of the first, second, or third promoters is a constitutive promoter.
6. The cell of claim 1 , wherein at least one of the first, second, or third promoters is a non-constitutive promoter in a plant cell.
7. The cell of claim 1 , wherein at least one of the first, second, or third promoters is a plant tissue-specific promoter.
8. The cell of claim 1 , wherein at least one of the first, second, or third promoters is specific to reproductive tissue of a plant.
9. The cell of claim 3 , wherein the gene of interest is a selectable or screenable marker.
10. The cell of claim 3 , wherein the gene of interest, when expressed in a plant, alters the reproductive capabilities of the plant to render the plant either male-sterile or female-sterile.
11. The cell of claim 1 , wherein at least one of the first, second, or third promoters is specific to vegetative tissues in a plant.
12. The cell of claim 1 , wherein at least one of the first, second, or third promoters is specific to vegetative tissues in a plant but not functional in reproductive or germinating tissues of a plant.
13. The cell of claim 1 , wherein at least two sequences selected from the first, second, and third sequences are introduced into the cell on a single nucleic acid construct.
14. The cell of claim 1 , wherein the first, second, and third sequences are introduced into the cell on a single nucleic acid construct.
15. The cell of claim 1 , wherein the first, second, and third sequences are introduced into the cell on separate nucleic acid constructs.
16. The cell of claim 1 , wherein at least one of the first, second, or third promoters is not functional in germinating tissues of a plant.
17. A plant comprising a cell of claim 2 .
18. A plant comprising:
a first sequence comprising a first promoter that is functional in a eukaryotic cell comprising an AHL-response element;
a second sequence comprising a second promoter that is functional in the cell comprising an AHL-response element operably linked to a sequence encoding an AHL synthase that, when expressed in the eukaryotic cell, synthesizes an AHL; and
a third sequence comprising a third promoter that is functional in the cell operably linked to a sequence encoding an AHL receptor.