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CRYAA

Mammalian lens crystallins are divided into alpha, beta, and gamma families. Alpha crystallins are composed of two gene products: alpha-A and alpha-B, for acidic and basic, respectively. Alpha crystallins can be induced by heat shock and are members of the small heat shock protein (HSP20) family. They act as molecular chaperones although they do not renature proteins and release them in the fashion of a true chaperone; instead they hold them in large soluble aggregates. Post-translational modifications decrease the ability to chaperone. These heterogeneous aggregates consist of 30-40 subunits; the alpha-A and alpha-B subunits have a 3:1 ratio, respectively. Two additional functions of alpha crystallins are an autokinase activity and participation in the intracellular architecture. The encoded protein has been identified as a moonlighting protein based on its ability to perform mechanistically distinct functions. Alpha-A and alpha-B gene products are differentially expressed; alpha-A is preferentially restricted to the lens and alpha-B is expressed widely in many tissues and organs. Defects in this gene cause autosomal dominant congenital cataract (ADCC).
Protein class

Disease related genes, Human disease related genes, Plasma proteins

Predicted location

Intracellular

Single cell type specificity

Cell type enriched (Muller glia cells)

Immune cell specificity

Not detected in immune cells

Cell line specificity

Cell line enriched (Hep G2)

Interaction

Heteropolymer composed of three CRYAA and one CRYAB subunits (PubMed:20836128). Inter-subunit bridging via zinc ions enhances stability, which is crucial as there is no protein turn over in the lens (PubMed:22890888). Can also form homodimers and homotetramers (dimers of dimers) which serve as the building blocks of homooligomers (PubMed:17909943, PubMed:31792453, PubMed:23255486). Within homooligomers, the zinc-binding motif is created from residues of 3 different molecules. His-100 and Glu-102 from one molecule are ligands of the zinc ion, and His-107 and His-154 residues from additional molecules complete the site with tetrahedral coordination geometry (By similarity). Part of a complex required for lens intermediate filament formation composed of BFSP1, BFSP2 and CRYAA (PubMed:28935373).

Molecular function

Chaperone, Eye lens protein

More Types Infomation

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For Research Use Only. Not For Clinical Use.

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