AHI1
Sign in to saveAlso known as AHI-1, JBTS3, ORF1, dJ71N10.1, Abelson helper integration site 1
The Abelson helper integration site 1 (AHI1) is a protein coding gene that is known for the critical role it plays in brain development. Proper cerebellar and cortical development in the human brain depends heavily on AHI1. The AHI1 gene is prominently expressed in the embryonic hindbrain and forebrain. AHI1 specifically encodes the Jouberin protein and mutations in the expression of the gene is known to cause specific forms of Joubert syndrome. Joubert syndrome is autosomal recessive and is characterized by the brain malformations and mental retardation that AHI1 mutations have the potential
In the Vinony graph
Within Vinony's link graph, AHI1 is referenced by 62 other articles, and connects out to PubMed, human chromosome 6 and Ensembl genome database project.
It is catalogued under the topic Genes on human chromosome 6.
Its subject is documented across 5 Wikipedia language editions.
Gene data
AHI1- Name
- Abelson helper integration site 1
- Type
- protein-coding
- Position
- 135,283,407–135,498,434 (−)
- Aliases
- AHI-1, JBTS3, ORF1, dJ71N10.1
- Ensembl
- ENSG00000135541
- RefSeq RNA
- NM_001134830.2, NM_001134831.2, NM_001134832.2, NM_001350503.2, NM_001350504.2
- RefSeq protein
- NP_001128302.1, NP_001128303.1, NP_001128304.1, NP_001337432.1, NP_001337433.1
This gene is apparently required for both cerebellar and cortical development in humans. This gene mutations cause specific forms of Joubert syndrome-related disorders. Joubert syndrome (JS) is a recessively inherited developmental brain disorder with several identified causative chromosomal loci. Alternatively spliced transcript variants encoding different isoforms have been identified. [provided by RefSeq, Oct 2008].
Gene Ontology
Biological process
Molecular function
Pathways
via MyGene.info
Gene · Ensembl
Abelson helper integration site 1
- Symbol
- AHI1
- Biotype
- Protein coding
- Organism
- Homo sapiens
- Location
- 6:135,283,407-135,498,434
- Strand
- Reverse (−)
- Assembly
- GRCh38
via Ensembl · EMBL-EBI
Wikidata facts
- Instance of
- gene
Show 9 more facts
- HomoloGene ID
- 9762
- genetic association
- Joubert syndrome
- found in taxon
- Homo sapiens
- exact match
- identifiers.org/ncbigene/54806
- genomic end
- 135498434
- genomic start
- 135283407
- chromosome
- human chromosome 6
- cytogenetic location
- 6q23.3
- expressed in
- sural nerve
via Wikidata · CC0
~2 min read
Encyclopedic overview
3 sectionsContents
- References
- External links
- Further reading
The Abelson helper integration site 1 (AHI1) is a protein coding gene that is known for the critical role it plays in brain development. Proper cerebellar and cortical development in the human brain depends heavily on AHI1. The AHI1 gene is prominently expressed in the embryonic hindbrain and forebrain. AHI1 specifically encodes the Jouberin protein and mutations in the expression of the gene is known to cause specific forms of Joubert syndrome. Joubert syndrome is autosomal recessive and is characterized by the brain malformations and mental retardation that AHI1 mutations have the potential to induce. AHI1 has also been associated with schizophrenia and autism due to the role it plays in brain development. An AHI1 heterozygous knockout mouse model was studied by Bernard Lerer and his group at Hadassah Medical Center in Jerusalem to elucidate the correlation between alterations in AHI1 expression and the pathogenesis of neuropsychiatric disorders. The core temperatures and corticosterone secretions of the heterozygous knockout mice after exposure to environmental and visceral stress exhibited extreme repression of autonomic nervous system and hypothalamic-pituitary-adrenal responses. The knockout mice demonstrated an increased resilience to different types of stress and these results lead to a correlation between emotional regulation and neuropsychiatric disorders.
Jouberin is a protein that in humans is encoded by the AHI1 gene.
Excerpted from Wikipedia’s “AHI1” article, available under the CC BY-SA 4.0 licence.