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Two distinct pathways can control expression of the gene encoding the Drosophila antimicrobial peptide metchnikowin
E A Levashina1, S Ohresser, B Lemaitre
1Réponse Immunitaire et Développement chez les Insectes, UPR 9022 du CNRS, Institut de Biologie Moléculaire et Cellulaire, 15 rue René Descartes, Strasbourg, 67000, France.
Abstract:
Metchnikowin is a recently discovered proline-rich peptide from Drosophila with antibacterial and antifungal properties. Like most other antimicrobial peptides from insects, its expression is immune-inducible. Here we present evidence that induction of metchnikowin gene expression can be mediated either by the TOLL pathway or by the imd gene product. We show that the gene remains inducible in Toll-deficient mutants, in which the antifungal response is blocked, as well as in imd mutants, which fail to mount an antibacterial response. However, in Toll-deficient;imd double mutants, metchnikowin gene expression can no longer be detected after immune challenge. Our results suggest that expression of this peptide with dual activity can be triggered by signals generated by either bacterial or fungal infection. Cloning of the metchnikowin gene revealed the presence in the 5' flanking region of several putative cis-regulatory motifs characterized in the promoters of insect immune genes: namely, Rel sites, GATA motifs, interferon consensus response elements and NF-IL6 response elements. Establishment of transgenic fly lines in which the GFP reporter gene was placed under the control of 1.5 kb of metchnikowin gene upstream sequences indicates that this fragment is able to confer full immune inducibility and tissue specificity of expression on the transgene.
Insights
Metchnikowin, an antimicrobial peptide in Drosophila, is induced by both bacterial and fungal infections. Its gene expression relies on the TOLL and imd pathways, crucial for insect immunity.
Area of Science:
- Molecular Biology
- Immunology
- Genetics
Background:
- Metchnikowin is a proline-rich peptide from Drosophila with known antibacterial and antifungal properties.
- Its expression, like other insect antimicrobial peptides, is inducible upon immune challenge.
Purpose of the Study:
- To investigate the signaling pathways regulating metchnikowin gene expression.
- To identify cis-regulatory elements responsible for immune inducibility and tissue specificity.
Main Methods:
- Analysis of metchnikowin gene expression in Toll-deficient and imd mutant Drosophila.
- Cloning of the metchnikowin gene and identification of cis-regulatory motifs.
- Generation of transgenic flies with a GFP reporter under metchnikowin promoter control.
Main Results:
- Metchnikowin induction is mediated by both the TOLL and imd pathways.
- The gene remains inducible in single mutants but not in Toll-deficient;imd double mutants.
- A 1.5 kb upstream fragment confers full immune inducibility and tissue specificity to a GFP reporter gene.
Conclusions:
- Metchnikowin expression is triggered by signals from both bacterial and fungal infections, involving both TOLL and imd pathways.
- The 5' flanking region of the metchnikowin gene contains cis-regulatory elements crucial for its immune response.
- This study elucidates the genetic regulation of a key immune peptide in Drosophila.