FB2026_02 , released June 18, 2026
Reference Report
Open Close
Reference
Citation
Saburova, E.A., Vasiliev, A.N., Kravtsova, V.V., Ryabova, E.V., Zefirov, A.L., Bolshakova, O.I., Sarantseva, S.V., Krivoi, I.I. (2017). Human APP Gene Expression Alters Active Zone Distribution and Spontaneous Neurotransmitter Release at the Drosophila Larval Neuromuscular Junction.  Neural Plast. 2017(): 9202584.
FlyBase ID
FBrf0236285
Publication Type
Research paper
Abstract
This study provides further insight into the molecular mechanisms that control neurotransmitter release. Experiments were performed on larval neuromuscular junctions of transgenic Drosophila melanogaster lines with different levels of human amyloid precursor protein (APP) production. To express human genes in motor neurons of Drosophila, the UAS-GAL4 system was used. Human APP gene expression increased the number of synaptic boutons per neuromuscular junction. The total number of active zones, detected by Bruchpilot protein puncta distribution, remained unchanged; however, the average number of active zones per bouton decreased. These disturbances were accompanied by a decrease in frequency of miniature excitatory junction potentials without alteration in random nature of spontaneous quantal release. Similar structural and functional changes were observed with co-overexpression of human APP and β-secretase genes. In Drosophila line with expression of human amyloid-β42 peptide itself, parameters analyzed did not differ from controls, suggesting the specificity of APP effects. These results confirm the involvement of APP in synaptogenesis and provide evidence to suggest that human APP overexpression specifically disturbs the structural and functional organization of active zone and results in altered Bruchpilot distribution and lowered probability of spontaneous neurotransmitter release.
PubMed ID
PubMed Central ID
PMC5523229 (PMC) (EuropePMC)
Associated Information
Comments
Associated Files
Other Information
Secondary IDs
    Language of Publication
    English
    Additional Languages of Abstract
    Parent Publication
    Publication Type
    Journal
    Abbreviation
    Neural Plast.
    Title
    Neural plasticity
    ISBN/ISSN
    1687-5443 2090-5904
    Data From Reference
    Alleles (4)
    Genes (4)
    Human Disease Models (1)
    Insertions (1)
    Transgenic Constructs (3)