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Optogenetic Inhibition of Rho1-Mediated Actomyosin Contractility Coupled with Measurement of Epithelial Tension in Drosophila Embryos
Published on: April 14, 2023
The inhibitor kappaB-ortholog Cactus is necessary for normal neuromuscular function in Drosophila melanogaster
A Beramendi1, S Peron, A Megighian
1Department of Zoology, Stockholm University, S-106 91 Stockholm, Sweden.
Abstract:
The Drosophila inhibitor-kappaB ortholog Cactus acts as an inhibitor of the Rel-transcription factors Dorsal and Dif. In blastoderm cells and immune competent cells, Cactus inhibits Dorsal and Dif by preventing their nuclear localization. Cactus, Dorsal and Dif are also expressed in somatic muscles, where Cactus and Dorsal, but not Dif, are enriched at the neuromuscular junction. Mutations in dorsal cause neuromuscular defects and mislocalization of Cactus. Here, we investigated whether mutations in cactus affect the neuromuscular system and subcellular localization of Dorsal and Dif. Using locomotion assays, as well as physiological and immunochemical methods, we found that wild type Cactus is necessary for the normal function of the larval neuromuscular system. The phenotype comprises i) altered bouton numbers and impaired neurotransmitter release in the neuromuscular junctions in the abdominal segments, ii) muscular weakness and iii) poor locomotion performance, probably reflecting a general neuromuscular impairment. Interestingly, in cactus mutants the subcellular localization of Dorsal and Dif in muscle is not affected, whereas cactus protein is not detected in the nucleus. This suggests, together with the similarities between the phenotypes induced by cactus and dorsal mutations, that in larval muscles the function of Cactus might be cooperation to the transcriptional activity of Rel proteins more than their cytoplasmic retention. The similarities with inhibitor-kappaB/nuclear factor kappaB interactions and muscle pathology in mammals point to Drosophila as a suitable experimental system to clarify the complex interactions of these proteins in muscle postembryonic development and activity.
Insights
Wild type Cactus is essential for normal larval neuromuscular function in Drosophila. Cactus mutations cause muscle weakness and impaired locomotion, suggesting a role beyond inhibiting nuclear entry.
Area of Science:
- Developmental Biology
- Neuroscience
- Molecular Genetics
Background:
- Cactus, the Drosophila inhibitor-kappaB ortholog, inhibits Rel-transcription factors Dorsal and Dif by preventing nuclear localization in blastoderm and immune cells.
- Cactus, Dorsal, and Dif are present in somatic muscles, with Cactus and Dorsal localized at the neuromuscular junction.
- Mutations in dorsal lead to neuromuscular defects and altered Cactus localization.
Purpose of the Study:
- To investigate the role of Cactus in the Drosophila larval neuromuscular system.
- To determine the effect of cactus mutations on the subcellular localization of Dorsal and Dif in muscles.
Main Methods:
- Locomotion assays
- Physiological measurements
- Immunochemical analysis
Main Results:
- Wild type Cactus is crucial for normal larval neuromuscular system function.
- Cactus mutations result in altered neuromuscular junction morphology, impaired neurotransmitter release, muscle weakness, and poor locomotion.
- In cactus mutants, Dorsal and Dif localization in muscle remains unaffected, but Cactus protein is absent from the nucleus.
Conclusions:
- Cactus function in larval muscles may involve cooperation with Rel proteins' transcriptional activity rather than solely cytoplasmic retention.
- The observed phenotypes and protein interactions suggest Drosophila as a model for studying mammalian NF-kappaB pathway and muscle pathology.

