FB2026_02 , released June 18, 2026
Allele: Dmel\fusl1
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General Information
Symbol
Dmel\fusl1
Species
D. melanogaster
Name
FlyBase ID
FBal0218988
Feature type
allele
Associated gene
Associated Insertion(s)
Carried in Construct
Key Links
Genomic Maps

Allele class
Nature of the Allele
Allele class
Progenitor genotype
Cytology
Description

Nucleotide substitution: T?A.

Amino acid replacement: C89term.

Mutations Mapped to the Genome
Curation Data
Type
Location
Additional Notes
References
Nucleotide change:

T5332148A

Reported nucleotide change:

T?A

Amino acid change:

C89term | fusl-PA; C89term | fusl-PB; C89term | fusl-PC; C89term | fusl-PD; C89term | fusl-PE; C89term | fusl-PF

Reported amino acid change:

C89term

Variant Molecular Consequences
Associated Sequence Data
DNA sequence
Protein sequence
 
Expression Data
Reporter Expression
Additional Information
Statement
Reference
 
Marker for
Reflects expression of
Reporter construct used in assay
Human Disease Associations
Disease Ontology (DO) Annotations
Models Based on Experimental Evidence ( 0 )
Disease
Evidence
References
Modifiers Based on Experimental Evidence ( 0 )
Disease
Interaction
References
Comments on Models/Modifiers Based on Experimental Evidence ( 0 )
 
Disease-implicated variant(s)
 
Phenotypic Data
Phenotypic Class
Phenotype Manifest In
Detailed Description
Statement
Reference

Mutant flies have an abnormal electroretinogram; the sustained photoreceptor component is normal in amplitude and duration, but the synaptic on- and off-transients are absent. Intracellular recordings from mutant photoreceptors indicate that the photoreceptor potentials have normal amplitude and duration, but they have ab aberrant, slowly decaying component.

Mutant third instar larvae do not show any detectable defects in the gross architecture of the musculature, with normal motor nerve trajectories, normal muscle anatomy and normally placed and differentiated neuromuscular junctions.

Homozygous and hemizygous larvae show a highly significant reduction in pharyngeal movements and locomotor body wall contractions compared to controls.

Homozygous and hemizygous larvae show a significant decrease in mean evoked EJC amplitude at the neuromuscular junction. The mutants show a significant increase in both the amplitude and frequency of mEJC events. Homozygous and hemizygous larvae show a significant impairment of endo-exo synaptic vesicle cycling (assayed by lipophilic dye imaging), with a particularly severe defect in synaptic vesicle exocytosis. The mutants display insensitivity to increasing concentrations of Ca[2+] compared to controls, with only small increases in EJC amplitude.

Ultrastructurally, the overall synapse structure appears normal in mutant larvae. The presynaptic boutons are normal in size and contain the expected array of organelles, with well differentiated presynaptic and postsynaptic membrane profiles. Synaptic vesicles are normal in size, but there is a dramatic elevation of vesicle number throughout the bouton and also clustered around presynaptic active zones in the mutants. The number of synaptic vesicles physically docked at the presynaptic active zone densities is also very significantly increased compared to controls.

External Data
Interactions
Show genetic interaction network for Enhancers & Suppressors
Phenotypic Class
NOT suppressed by
Statement
Reference
Phenotype Manifest In
NOT suppressed by
Additional Comments
Genetic Interactions
Statement
Reference

The defects in mean EJC amplitude seen at the neuromuscular junction in fusl1 larvae are not rescued by expression of cacScer\UAS.T:Avic\GFP-EGFP under the control of Scer\GAL4elav.PLu.

Xenogenetic Interactions
Statement
Reference
Complementation and Rescue Data
Comments
Images (0)
Mutant
Wild-type
Stocks (0)
Notes on Origin
Discoverer

Selected as: a mutation with an abnormal electroretinogram response.

External Crossreferences and Linkouts ( 0 )
Synonyms and Secondary IDs (1)
Reported As
Symbol Synonym
Name Synonyms
Secondary FlyBase IDs
    References (1)