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GeneQ17910349· pop 5· linked from 31 articles

Also known as CRYG8, CTRCT20, crystallin gamma S

Gamma-crystallin S is a protein that in humans is encoded by the CRYGS gene.

Gene data

CRYGS
Name
crystallin gamma S
Type
protein-coding
Aliases
CRYG8, CTRCT20

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. Gamma-crystallins are a homogeneous group of highly symmetrical, monomeric proteins typically lacking connecting peptides and terminal extensions. They are differentially regulated after early development. This gene encodes a protein initially considered to be a beta-crystallin but the encoded protein is monomeric and has greater sequence similarity to other gamma-crystallins. This gene encodes the most significant gamma-crystallin in adult eye lens tissue. Whether due to aging or mutations in specific genes, gamma-crystallins have been involved in cataract formation. [provided by RefSeq, Jul 2008].

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Wikidata facts

Image
Protein CRYGS PDB 1a7h.png
Show 5 more facts
HomoloGene ID
40695
genomic end
186264491
genomic start
186256230
cytogenetic location
3q27.3
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Gamma-crystallin S is a protein that in humans is encoded by the CRYGS 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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