FB2024_03 , released June 25, 2024
Allele: Dmel\IKKβ1
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General Information
Symbol
Dmel\IKKβ1
Species
D. melanogaster
Name
FlyBase ID
FBal0086536
Feature type
allele
Associated gene
Associated Insertion(s)
Carried in Construct
Also Known As
ird51, DmIkkβird5
Key Links
Genomic Maps

Nature of the Allele
Progenitor genotype
Cytology
Description

Nucleotide substitution: C?T.

Amino acid replacement: Q266term.

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

C16048218T

Reported nucleotide change:

C?T

Amino acid change:

Q232term | IKKbeta-PB

Reported amino acid change:

Q266term

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

IKKβ1/Df(3R)Exel7328 transheterozygotes infected with DCV show a significantly decreased lifespan and a severe increase in viral load, as compared to infected controls.

IKKβ1 mutants are significantly more likely to die from Serratia marcescens infection than their wild-type counterparts.

IKKβ1 mutants exhibit a significant reduction in survival under hypoxic conditions, as compared to controls.

Mutants show no detectable induction of Dpt, CecA1 and CecA2. Attacin levels are reduced compared to wild type and Drs induction is normal. Bacteria injected into mutant larvae show increased survival compared to those injected into wild type: 6hr after infection 4-15 times as many bacteria survive in mutants than in wild type. In adults, 24hr after infection 20-350 times as many bacteria survive in mutants than in wild type. Phenotype is similar to that shown by Rel mutants and stronger than that shown by imd mutants. A small fraction (0.5%) of embryos produced by homozygous ird51 mothers or ird51/ird52 transheterozygotes show weakly dorsalized phenotypes.

External Data
Interactions
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Phenotypic Class
Phenotype Manifest In
Additional Comments
Genetic Interactions
Statement
Reference
Xenogenetic Interactions
Statement
Reference
Complementation and Rescue Data
Images (0)
Mutant
Wild-type
Stocks (1)
Notes on Origin
Discoverer
External Crossreferences and Linkouts ( 0 )
Synonyms and Secondary IDs (5)
Reported As
Name Synonyms
Secondary FlyBase IDs
    References (11)