GEPHE SUMMARY Print
Gephebase Gene
Entry Status
Published
GepheID
GP00000294
Main curator
Martin
PHENOTYPIC CHANGE
Trait Category
Trait State in Taxon A
Lucilia cuprina
Trait State in Taxon B
Lucilia cuprina
Ancestral State
Data not curated
Taxonomic Status
Taxon A
Common Name
Australian sheep blowfly
Synonyms
Australian sheep blowfly; greenbottle fly; Lucilia cuprina (Wiedemann, 1830)
Rank
species
Lineage
Show more ... ; Hexapoda; Insecta; Dicondylia; Pterygota; Neoptera; Holometabola; Diptera; Brachycera; Muscomorpha; Eremoneura; Cyclorrhapha; Schizophora; Calyptratae; Oestroidea; Calliphoridae; Luciliinae; Lucilia
NCBI Taxonomy ID
is Taxon A an Infraspecies?
No
Taxon B
Common Name
Australian sheep blowfly
Synonyms
Australian sheep blowfly; greenbottle fly; Lucilia cuprina (Wiedemann, 1830)
Rank
species
Lineage
Show more ... ; Hexapoda; Insecta; Dicondylia; Pterygota; Neoptera; Holometabola; Diptera; Brachycera; Muscomorpha; Eremoneura; Cyclorrhapha; Schizophora; Calyptratae; Oestroidea; Calliphoridae; Luciliinae; Lucilia
NCBI Taxonomy ID
is Taxon B an Infraspecies?
No
GENOTYPIC CHANGE
Generic Gene Name
LcaE7
Synonyms
-
String
-
Sequence Similarities
Belongs to the type-B carboxylesterase/lipase family.
GO - Biological Process
-
GO - Cellular Component
-
UniProtKB
Lucilia cuprina
GenebankID or UniProtKB
Presumptive Null
No
Molecular Type
Aberration Type
SNP
SNP Coding Change
Nonsynonymous
Molecular Details of the Mutation
Gly137Asp
Experimental Evidence
Taxon A Taxon B Position
Codon - - -
Amino-acid - - -
Authors
Newcomb RD; Campbell PM; Ollis DL; Cheah E; Russell RJ; Oakeshott JG
Abstract
Resistance to organophosphorus (OP) insecticides is associated with decreased carboxylesterase activity in several insect species. It has been proposed that the resistance may be the result of a mutation in a carboxylesterase that simultaneously reduces its carboxylesterase activity and confers an OP hydrolase activity (the "mutant ali-esterase hypothesis"). In the sheep blowfly, Lucilia cuprina, the association is due to a change in a specific esterase isozyme, E3, which, in resistant flies, has a null phenotype on gels stained using standard carboxylesterase substrates. Here we show that an OP-resistant allele of the gene that encodes E3 differs at five amino acid replacement sites from a previously described OP-susceptible allele. Knowledge of the structure of a related enzyme (acetylcholinesterase) suggests that one of these substitutions (Gly137 --> Asp) lies within the active site of the enzyme. The occurrence of this substitution is completely correlated with resistance across 15 isogenic strains. In vitro expression of two natural and two synthetic chimeric alleles shows that the Asp137 substitution alone is responsible for both the loss of E3's carboxylesterase activity and the acquisition of a novel OP hydrolase activity. Modeling of Asp137 in the homologous position in acetylcholinesterase suggests that Asp137 may act as a base to orientate a water molecule in the appropriate position for hydrolysis of the phosphorylated enzyme intermediate.
Additional References
RELATED GEPHE
Related Genes
No matches found.
Related Haplotypes
1
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