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GeneQ17910122· pop 6· linked from 33 articles

Also known as CTRCT23, MCOPCT4, CYRBA4, crystallin beta A4

Beta-crystallin A4 is a protein that in humans is encoded by the CRYBA4 gene.

Gene data

CRYBA4
Name
crystallin beta A4
Type
protein-coding
Position
26,621,963–26,630,669 (+)
Aliases
CTRCT23, CYRBA4, MCOPCT4
RefSeq RNA
NM_001886.3, XM_006724140.4, XM_054325112.1
RefSeq protein
NP_001877.1, XP_006724203.1, XP_054181087.1

Crystallins are separated into two classes: taxon-specific, or enzyme, and ubiquitous. The latter class constitutes the major proteins of vertebrate eye lens and maintains the transparency and refractive index of the lens. Since lens central fiber cells lose their nuclei during development, these crystallins are made and then retained throughout life, making them extremely stable proteins. Mammalian lens crystallins are divided into alpha, beta, and gamma families; beta and gamma crystallins are also considered as a superfamily. Alpha and beta families are further divided into acidic and basic groups. Seven protein regions exist in crystallins: four homologous motifs, a connecting peptide, and N- and C-terminal extensions. Beta-crystallins, the most heterogeneous, differ by the presence of the C-terminal extension (present in the basic group, none in the acidic group). Beta-crystallins form aggregates of different sizes and are able to self-associate to form dimers or to form heterodimers with other beta-crystallins. This gene, a beta acidic group member, is part of a gene cluster with beta-B1, beta-B2, and beta-B3. [provided by RefSeq, Jul 2008].

via MyGene.info

Gene · Ensembl

crystallin beta A4

Symbol
CRYBA4
Biotype
Protein coding
Organism
Homo sapiens
Location
22:26,621,958-26,630,669
Strand
Forward (+)
Assembly
GRCh38
View on Ensembl →

via Ensembl · EMBL-EBI

Wikidata facts

Image
Crystal structure of human Beta-crystallin A4 (CRYBA4) 3LWK.png
Show 5 more facts
HomoloGene ID
1422
genomic end
26630669
genomic start
26621963
cytogenetic location
22q12.1
Sources (4)

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Beta-crystallin A4 is a protein that in humans is encoded by the CRYBA4 gene.

Crystallins are separated into two classes: taxon-specific, or enzyme, and ubiquitous. The latter class constitutes the major proteins of vertebrate eye lens and maintains the transparency and refractive index of the lens. Since lens central fiber cells lose their nuclei during development, these crystallins are made and then retained throughout life, making them extremely stable proteins.

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