FB2026_01 , released March 12, 2026
FB2026_01 , released March 12, 2026
Human Disease Model Report: cancer, multiple, WWOX-related
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General Information
Name
cancer, multiple, WWOX-related
FlyBase ID
FBhh0000649
Disease Ontology Term
Parent Disease
OMIM
Overview

The human gene WWOX has been described as a tumor suppressor gene, but its function is not understood. It encodes a member of the short-chain dehydrogenases/reductases (SDR) protein family; the encoded protein may play a role in reactive oxygen species regulation and metabolic homeostasis. There is a single orthologous gene in Drosophila, Dmel\Wwox, for which RNAi targeting constructs, alleles caused by insertional mutagenesis, and an amorphic allele created by targeted recombination have been generated.

A UAS construct of the wild-type human Hsap\WWOX gene has been introduced into flies, but has not been characterized in the context of this disease model.

Animals that are homozygous for an amorphic mutation of Dmel\Wwox are viable, without conspicuous visible phenotypes. A phenotype of sensitivity to ionizing radiation has been described, but was subsequently found to be due to genetic background. A small number of genetic interactions have been reported for Dmel\Wwox; see the Wwox gene report.

In several assays, reductions in the expression of Wwox in concert with other tumorigenic changes result in an increase in overgrowth phenotypes. Decreased Wwox expression exacerbates the overgrowth-related phenotypes caused by reduced expression of a number of different mitochondrial respiratory complex genes (assayed as RNAi-effected phenotypes in the adult eye). In a model of cell overgrowth using clones of scrib mutant cells in the developing eye disc (see FBhh0000587), tumorigenic clones that are surrounded by wild-type cells are eliminated or reduced in size; a decrease of Wwox within the clones of tumorigenic cells disrupts this process, resulting in an increase in their ability to compete and a decrease in their elimination.

[updated Feb. 2019 by FlyBase; FBrf0222196]

Disease Summary Information
Disease Summary: cancer, multiple, WWOX-related
OMIM report
Human gene(s) implicated
Symptoms and phenotype

The WWOX gene spans a 750kb region identified as a fragile site and commonly affected by somatic loss in breast cancer and in esophageal cancer. [from MIM:605131; 2017.1006]

Genetics
Cellular phenotype and pathology
Molecular information

WWOX encodes a member of the short-chain dehydrogenases/reductases (SDR) protein family; the encoded protein plays a role in apoptosis. The gene spans the FRA16D chromosomal fragile site and appears to function as a tumor suppressor gene. [Gene Cards, WWOX; 2017.10.06]

The protein domains of WWOX are conserved through evolution (between humans and D. melanogaster) and include WW domains, an NAD-binding site, short-chain dehydrogenase/reductase enzyme and nuclear compartmentalization signals. Work in Drosophila supports roles for WWOX in reactive oxygen species regulation and metabolism. (Richards et al., 2015; pubmed:25595186; FBrf0227870).

WWOX encodes a protein containing an oxidoreductase domain and WW protein interaction domains; it may play a role in steroid metabolism. [from MIM:605131; 2017.1006]

External links
Disease synonyms
FRA16D
fragile site 16q23.2
Ortholog Information
Human gene(s) in FlyBase
Human gene (HGNC)
D. melanogaster ortholog (based on DIOPT)
Comments on ortholog(s)

One to one: 1 human gene to 1 Drosophila gene.

Other mammalian ortholog(s) used
    D. melanogaster Gene Information (1)
    Gene Snapshot
    WW domain containing oxidoreductase (Wwox) encodes a protein that contributes to homeostasis by regulating the balance between oxidative phosphorylation and glycolysis. It modulates the cell death mediated by the product of egr, which is accompanied by an increase in levels of reactive oxygen species. [Date last reviewed: 2018-11-15]
    Molecular function (GO)
      Cellular component (GO)
      Gene Groups / Pathways
        Comments on ortholog(s)

        High-scoring ortholog of human WWOX (1 Drosophila to 1 human); Dmel\Wwox shares 50% identity and 66% similarity with human WWOX.

        Orthologs and Alignments from DRSC
        DIOPT - DRSC Integrative Ortholog Prediction Tool - Click the link below to search for orthologs in Humans
        Other Genes Used: Viral, Bacterial, Synthetic (0)
          Summary of Physical Interactions (0 groups)
          Alleles Reported to Model Human Disease (Disease Ontology) (2 alleles)
          Models Based on Experimental Evidence ( 2 )
          Allele
          Disease
          Evidence
          References
          Modifiers Based on Experimental Evidence ( 2 )
          Allele
          Disease
          Interaction
          References
          model of  cancer
          is exacerbated by ND-23GD11167
          is exacerbated by ND-42GD6220
          is exacerbated by ND-75KK108222
          ameliorates  carcinoma
          model of  cancer
          is exacerbated by COX5BGD6659
          is exacerbated by ND-23GD11167
          is exacerbated by COX5AGD5167
          is exacerbated by ND-42GD6220
          is exacerbated by ND-75KK108222
          Alleles Representing Disease-Implicated Variants
          Genetic Tools, Stocks and Reagents
          Sources of Stocks
          Contact lab of origin for a reagent not available from a public stock center.
          Bloomington Stock Center Disease Page
          Related mammalian, viral, bacterial, or synthetic transgenes
          Allele
          Transgene
          Publicly Available Stocks
          Selected Drosophila transgenes
          Allele
          Transgene
          Publicly Available Stocks
          RNAi constructs available
          Allele
          Transgene
          Publicly Available Stocks
          Selected Drosophila classical alleles
          Allele
          Allele class
          Mutagen
          Publicly Available Stocks
          References (11)