FB2026_03 , released September 17, 2026
Human Disease Model Report: intellectual disability, autosomal recessive 2
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General Information
Name
intellectual disability, autosomal recessive 2
FlyBase ID
FBhh0000817
Overview

This report describes intellectual disability, autosomal recessive 2, which is one of an extensive series of diseases classified as intellectual disability, autosomal recessive. An alternative designation of this disease is 'mental retardation, autosomal recessive 2' (MRT2). The human gene implicated in this disease is CRBN, which encodes a substrate recognition component of a DCX/CUL4 E3 protein ligase complex that mediates the ubiquitination and subsequent proteasomal degradation of target proteins. There is a single Drosophila ortholog, ohgt, for which RNAi-targeting constructs, an allele caused by insertional mutagenesis, a loss-of-function mutation caused by imprecise excision of a TE insertion, and an amorphic allele created by targeted recombination have been generated.

A UAS construct of a tagged human Hsap\CRBN gene has been introduced into flies, but has not been characterized in the context of this human disease model.

Animals homozygous for loss-of-function mutations of Dmel\ohgt exhibit decreased probability of neurotransmission release, as assayed for larval neuromuscular junction synapses. A wild-type copy of the fly gene rescues this phenotype, but a gene carrying a nonsense mutation comparable to one implicated in MRT2 does not. Variant(s) implicated in human disease tested (as analogous mutation in fly gene): G552* in the fly ohgt gene (comparable to R419* in the human CRBN gene). A single physical interaction has been described for Dmel\ohgt; see below and in the ohgt gene report.

[updated June 2018 by FlyBase; FBrf0222196]

Disease Summary Information
Parent Disease Summary: intellectual disability, autosomal recessive
Symptoms and phenotype

Intellectual disability is characterized by impairments in intellectual functioning and adaptive behavior; symptoms must be present before a child becomes 18 years old (http://medical-dictionary.thefreedictionary.com/mental+retardation; 2016.01.19).

Intellectual disability can be subdivided into syndromic forms, characterized by cognitive impairment accompanied by dysmorphic features, malformations or neurological abnormalities, and nonsyndromic forms, characterized by cognitive impairment without additional features (Basel-Vanagaite, 2008; DOI: 10.1002/9780470015902.a0021454).

Specific Disease Summary: intellectual disability, autosomal recessive 2
OMIM report

[INTELLECTUAL DEVELOPMENTAL DISORDER, AUTOSOMAL RECESSIVE 2; MRT2](https://omim.org/entry/607417)

Human gene(s) implicated

[CEREBLON; CRBN](https://omim.org/entry/609262)

Symptoms and phenotype

Two pedigrees extensively characterized: one with individuals exhibiting mild nonsyndromic intellectual disability, the other with individuals exhibiting severe intellectual disability, self-mutilating behavior, and seizures. [from MIM:607417; 2018.06.19]

Genetics

Autosomal recessive mental retardation-2 (MRT2) is caused by homozygous mutation in the gene encoding cereblon (CRBN). [from MIM:607417; 2018.06.19]

Cellular phenotype and pathology
Molecular information

CRBN encodes a substrate recognition component of a DCX (DDB1-CUL4-X-box) E3 protein ligase complex that mediates the ubiquitination and subsequent proteasomal degradation of target proteins; normal degradation of the targeted regulatory proteins is required for normal limb outgrowth. In mammals, the CRBN protein product is found in the cytoplasm localized with a calcium channel membrane protein, and is thought to play a role in brain development. [Gene Cards, CRBN; 2018.06.19]

CRBN is a substrate receptor within the CRL4 E3-ubiquitin-ligase complex; it has been identified as a thalidomide-binding protein. [from MIM:609262; 2018.06.19]

External links
Disease synonyms
mental retardation, autosomal recessive 2
MRT2
Ortholog Information
Human gene(s) in FlyBase
Human gene (HGNC)
Symbol / Name
D. melanogaster ortholog (based on DIOPT)
Comments on ortholog(s)

One to one (1 human to 1 Drosophila).

Other mammalian ortholog(s) used
    D. melanogaster Gene Information (1)
    Gene Snapshot
    ohgata (ohgt) encodes a protein that controls growth by negatively regulating insulin signaling. It also has a role in maintaining presynaptic function in third-instar neuromuscular junction synapses. [Date last reviewed: 2018-11-15]
    Gene Groups / Pathways
    Comments on ortholog(s)

    High-scoring ortholog of human CRBN (1 Drosophila to 1 human); Dmel\ohgt shares 28% identity and 47% similarity with the human gene.

    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 (1 groups)
      protein-protein
      Interacting group
      Assay
      References
      anti bait coimmunoprecipitation, western blot, anti tag coimmunoprecipitation
      Alleles Reported to Model Human Disease (Disease Ontology) (2 alleles)
      Models Based on Experimental Evidence ( 2 )
      Modifiers Based on Experimental Evidence ( 0 )
      Allele
      Disease
      Interaction
      References
      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
      amorphic allele - molecular evidence
      P-element activity
      amorphic allele - molecular evidence
      CRISPR/Cas9
      References (6)