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MGI:Cryab

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Contents

Species (Taxon ID) Mus musculus (house mouse) (taxon:10090)
Gene Name(s) Cryab ( synonyms: alpha B-crystallin, Crya-2, Crya2, HspB5 )
Protein Name(s) crystallin, alpha B,
External Links
MGI MGI:88516

Annotations

Qualifier GO ID GO term name Reference Evidence Code with/from Aspect Notes Status
GO:0001666

response to hypoxia

MGI:MGI:3776170
PMID:18191123[1]

IMP: Inferred from Mutant Phenotype

MGI:MGI:2652177

P

From MGI

GO:0002088

lens development in camera-type eye

MGI:MGI:3617146
PMID:16439475[2]

IGI: Inferred from Genetic Interaction

MGI:MGI:88515

P

From MGI

GO:0005212

structural constituent of eye lens

MGI:MGI:2682441
PMID:12546709[3]

TAS: Traceable Author Statement

F

From MGI

GO:0005515

protein binding

MGI:MGI:3775669
PMID:18056999[4]

IPI: Inferred from Physical Interaction

UniProtKB:P24622

F

From MGI

GO:0005625

soluble fraction

MGI:MGI:3028713
PMID:14627610[5]

IDA: Inferred from Direct Assay

C

From MGI

GO:0005626

insoluble fraction

MGI:MGI:3028713
PMID:14627610[5]

IDA: Inferred from Direct Assay

C

From MGI

GO:0005634

nucleus

MGI:MGI:4834177

ISO: Inferred from Sequence Orthology

UniProtKB:P02511

C

From MGI

GO:0005737

cytoplasm

MGI:MGI:4834177

ISO: Inferred from Sequence Orthology

UniProtKB:P02511

C

From MGI

GO:0005739

mitochondrion

MGI:MGI:3776170
PMID:18191123[1]

IDA: Inferred from Direct Assay

C

From MGI

GO:0005794

Golgi apparatus

MGI:MGI:4417868

ISO: Inferred from Sequence Orthology

UniProtKB:P23928

C

From MGI

GO:0005829

cytosol

MGI:MGI:3776170
PMID:18191123[1]

IDA: Inferred from Direct Assay

C

From MGI

GO:0005886

plasma membrane

MGI:MGI:3028713
PMID:14627610[5]

IDA: Inferred from Direct Assay

C

From MGI

GO:0006006

glucose metabolic process

MGI:MGI:4417868

ISO: Inferred from Sequence Orthology

UniProtKB:P23928

P

From MGI

GO:0006457

protein folding

MGI:MGI:4417868

ISO: Inferred from Sequence Orthology

UniProtKB:P23928

P

From MGI

GO:0006916

anti-apoptosis

MGI:MGI:4834177

ISO: Inferred from Sequence Orthology

UniProtKB:P02511

P

From MGI

GO:0007021

tubulin complex assembly

MGI:MGI:3653522
PMID:16675842[6]

IMP: Inferred from Mutant Phenotype

MGI:MGI:2652177

P

From MGI

GO:0007517

muscle organ development

MGI:MGI:2154007
PMID:11687538[7]

IGI: Inferred from Genetic Interaction

MGI:MGI:1916503

P

From MGI

GO:0008017

microtubule binding

MGI:MGI:4417868

ISO: Inferred from Sequence Orthology

UniProtKB:P23928

F

From MGI

GO:0008092

cytoskeletal protein binding

MGI:MGI:4417868

ISO: Inferred from Sequence Orthology

UniProtKB:P23928

F

From MGI

GO:0009986

cell surface

MGI:MGI:4417868

ISO: Inferred from Sequence Orthology

UniProtKB:P23928

C

From MGI

GO:0010629

negative regulation of gene expression

MGI:MGI:3758141
PMID:17893660[8]

IMP: Inferred from Mutant Phenotype

MGI:MGI:2652177

P

From MGI

GO:0015630

microtubule cytoskeleton

MGI:MGI:4417868

ISO: Inferred from Sequence Orthology

UniProtKB:P23928

C

From MGI

GO:0030018

Z disc

MGI:MGI:3028713
PMID:14627610[5]

IDA: Inferred from Direct Assay

C

From MGI

GO:0030308

negative regulation of cell growth

MGI:MGI:4417868

ISO: Inferred from Sequence Orthology

UniProtKB:P23928

P

From MGI

GO:0031109

microtubule polymerization or depolymerization

MGI:MGI:4417868

ISO: Inferred from Sequence Orthology

UniProtKB:P23928

P

From MGI

GO:0031674

I band

MGI:MGI:4417868

ISO: Inferred from Sequence Orthology

UniProtKB:P23928

C

From MGI

GO:0032387

negative regulation of intracellular transport

MGI:MGI:4834177

ISO: Inferred from Sequence Orthology

UniProtKB:P02511

P

From MGI

GO:0032432

actin filament bundle

MGI:MGI:4417868

ISO: Inferred from Sequence Orthology

UniProtKB:P23928

C

From MGI

GO:0042542

response to hydrogen peroxide

MGI:MGI:3710733
PMID:17438522[9]

IMP: Inferred from Mutant Phenotype

MGI:MGI:2652177

P

From MGI

GO:0042803

protein homodimerization activity

MGI:MGI:4834177

ISO: Inferred from Sequence Orthology

UniProtKB:P02511

F

From MGI

GO:0043010

camera-type eye development

MGI:MGI:2682441
PMID:12546709[3]

IGI: Inferred from Genetic Interaction

MGI:MGI:88515

P

From MGI

GO:0043066

negative regulation of apoptotic process

MGI:MGI:3776170
PMID:18191123[1]

IMP: Inferred from Mutant Phenotype

MGI:MGI:2652177

P

From MGI

GO:0043066

negative regulation of apoptotic process

MGI:MGI:4417868

ISO: Inferred from Sequence Orthology

UniProtKB:P23928

P

From MGI

GO:0043154

negative regulation of cysteine-type endopeptidase activity involved in apoptotic process

MGI:MGI:3617146
PMID:16439475[2]

IGI: Inferred from Genetic Interaction

MGI:MGI:88515

P

From MGI

GO:0043292

contractile fiber

MGI:MGI:3028713
PMID:14627610[5]

IDA: Inferred from Direct Assay

C

From MGI

GO:0051082

unfolded protein binding

MGI:MGI:4834177

ISO: Inferred from Sequence Orthology

UniProtKB:P02511

F

From MGI

GO:0051260

protein homooligomerization

MGI:MGI:4834177

ISO: Inferred from Sequence Orthology

UniProtKB:P02511

P

From MGI

GO:0051403

stress-activated MAPK cascade

MGI:MGI:4417868

ISO: Inferred from Sequence Orthology

UniProtKB:P23928

P

From MGI

GO:0060561

apoptotic process involved in morphogenesis

MGI:MGI:3617146
PMID:16439475[2]

IGI: Inferred from Genetic Interaction

MGI:MGI:88515

P

From MGI

GO:2000378

negative regulation of reactive oxygen species metabolic process

MGI:MGI:4417868

ISO: Inferred from Sequence Orthology

UniProtKB:P23928

P

From MGI


Notes

References

See Help:References for how to manage references in GONUTS.
  1. 1.0 1.1 1.2 1.3 Yaung J et al. (2008) Exacerbation of retinal degeneration in the absence of alpha crystallins in an in vivo model of chemically induced hypoxia. Exp Eye Res 86: 355-65 PubMed GONUTS page
  2. 2.0 2.1 2.2 Morozov V & Wawrousek EF (2006) Caspase-dependent secondary lens fiber cell disintegration in alphaA-/alphaB-crystallin double-knockout mice. Development 133: 813-21 PubMed GONUTS page
  3. 3.0 3.1 Boyle DL et al. (2003) Morphological characterization of the Alpha A- and Alpha B-crystallin double knockout mouse lens. BMC Ophthalmol 3: 3 PubMed GONUTS page
  4. Xi JH et al. (2008) Mechanism of small heat shock protein function in vivo: a knock-in mouse model demonstrates that the R49C mutation in alpha A-crystallin enhances protein insolubility and cell death. J Biol Chem 283: 5801-14 PubMed GONUTS page
  5. 5.0 5.1 5.2 5.3 5.4 Koh TJ & Escobedo J (2004) Cytoskeletal disruption and small heat shock protein translocation immediately after lengthening contractions. Am J Physiol Cell Physiol 286: C713-22 PubMed GONUTS page
  6. Xi JH et al. (2006) Alpha-crystallin expression affects microtubule assembly and prevents their aggregation. FASEB J 20: 846-57 PubMed GONUTS page
  7. Brady JP et al. (2001) AlphaB-crystallin in lens development and muscle integrity: a gene knockout approach. Invest Ophthalmol Vis Sci 42: 2924-34 PubMed GONUTS page
  8. Bai F et al. (2007) Up-regulation of tau, a brain microtubule-associated protein, in lens cortical fractions of aged alphaA-, alphaB-, and alphaA/B-crystallin knockout mice. Mol Vis 13: 1589-600 PubMed GONUTS page
  9. Yaung J et al. (2007) alpha-Crystallin distribution in retinal pigment epithelium and effect of gene knockouts on sensitivity to oxidative stress. Mol Vis 13: 566-77 PubMed GONUTS page
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