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MGI:Lamb1

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Contents

Species (Taxon ID) Mus musculus (house mouse) (taxon:10090)
Gene Name(s) Lamb1 ( synonyms: C80098, C81607, Lamb-1, Lamb1-1 )
Protein Name(s) laminin B1,
External Links
MGI MGI:96743

Annotations

Qualifier GO ID GO term name Reference Evidence Code with/from Aspect Notes Status
GO:0005178

integrin binding

MGI:MGI:84972
PMID:9004048[1]

IMP: Inferred from Mutant Phenotype

F

From MGI

GO:0005201

extracellular matrix structural constituent

MGI:MGI:4834177

ISO: Inferred from Sequence Orthology

UniProtKB:P07942

F

From MGI

GO:0005515

protein binding

MGI:MGI:2662649
PMID:12743034[2]

IPI: Inferred from Physical Interaction

UniProtKB:P02468
UniProtKB:Q61001

F

From MGI

GO:0005515

protein binding

MGI:MGI:4412469
PMID:7639691[3]

IPI: Inferred from Physical Interaction

UniProtKB:P17301

F

From MGI

GO:0005576

extracellular region

MGI:MGI:1354194

IEA: Inferred from Electronic Annotation

UniProtKB-KW:KW-0964

C

From MGI

GO:0005578

proteinaceous extracellular matrix

MGI:MGI:3624056
PMID:16554364[4]

IDA: Inferred from Direct Assay

C

From MGI

GO:0005604

basement membrane

MGI:MGI:2662649
PMID:12743034[2]

IDA: Inferred from Direct Assay

C

From MGI

GO:0005604

basement membrane

MGI:MGI:3045829
PMID:15102706[5]

IDA: Inferred from Direct Assay

C

From MGI

GO:0005604

basement membrane

MGI:MGI:3579951
PMID:15895400[6]

IDA: Inferred from Direct Assay

C

From MGI

GO:0005604

basement membrane

MGI:MGI:3610934
PMID:12631063[7]

IDA: Inferred from Direct Assay

C

From MGI

GO:0005604

basement membrane

MGI:MGI:3776221
PMID:16041630[8]

IDA: Inferred from Direct Assay

C

From MGI

GO:0005604

basement membrane

MGI:MGI:3807344
PMID:18757743[9]

IDA: Inferred from Direct Assay

C

From MGI

GO:0005604

basement membrane

MGI:MGI:4441265
PMID:16631359[10]

IDA: Inferred from Direct Assay

C

From MGI

GO:0005604

basement membrane

MGI:MGI:4834177

ISO: Inferred from Sequence Orthology

UniProtKB:P07942

C

From MGI

GO:0005604

basement membrane

MGI:MGI:52425
PMID:1292752[11]

IDA: Inferred from Direct Assay

C

From MGI

GO:0005605

basal lamina

MGI:MGI:1101275
PMID:9396756[12]

IDA: Inferred from Direct Assay

C

From MGI

GO:0005606

laminin-1 complex

MGI:MGI:1095193
PMID:9264260[13]

IDA: Inferred from Direct Assay

C

From MGI

GO:0005606

laminin-1 complex

MGI:MGI:4834177

ISO: Inferred from Sequence Orthology

UniProtKB:P07942

C

From MGI

GO:0005607

laminin-2 complex

MGI:MGI:4834177

ISO: Inferred from Sequence Orthology

UniProtKB:P07942

C

From MGI

GO:0005615

extracellular space

MGI:MGI:4834177

ISO: Inferred from Sequence Orthology

UniProtKB:P07942

C

From MGI

GO:0007155

cell adhesion

MGI:MGI:1354194

IEA: Inferred from Electronic Annotation

UniProtKB-KW:KW-0130

P

From MGI

GO:0007162

negative regulation of cell adhesion

MGI:MGI:4412469
PMID:7639691[3]

IDA: Inferred from Direct Assay

P

From MGI

GO:0007566

embryo implantation

MGI:MGI:3045829
PMID:15102706[5]

IMP: Inferred from Mutant Phenotype

MGI:MGI:3048667

P

From MGI

GO:0007611

learning or memory

MGI:MGI:3046598
PMID:15207330[14]

NAS: Non-traceable Author Statement

P

From MGI

GO:0016477

cell migration

MGI:MGI:84972
PMID:9004048[1]

IMP: Inferred from Mutant Phenotype

P

From MGI

GO:0019899

enzyme binding

MGI:MGI:3056824
PMID:15474030[15]

IPI: Inferred from Physical Interaction

UniProtKB:P21836

F

From MGI

GO:0030335

positive regulation of cell migration

MGI:MGI:4834177

ISO: Inferred from Sequence Orthology

UniProtKB:P07942

P

From MGI

GO:0031012

extracellular matrix

MGI:MGI:4417868

ISO: Inferred from Sequence Orthology

NCBI:NP_001100191

C

From MGI

GO:0031175

neuron projection development

MGI:MGI:3836888
PMID:19118221[16]

IDA: Inferred from Direct Assay

P

From MGI

GO:0031175

neuron projection development

MGI:MGI:4834177

ISO: Inferred from Sequence Orthology

UniProtKB:P07942

P

From MGI

GO:0034446

substrate adhesion-dependent cell spreading

MGI:MGI:4834177

ISO: Inferred from Sequence Orthology

UniProtKB:P07942

P

From MGI

GO:0042476

odontogenesis

MGI:MGI:4834177

ISO: Inferred from Sequence Orthology

UniProtKB:P07942

P

From MGI

GO:0043208

glycosphingolipid binding

MGI:MGI:3836888
PMID:19118221[16]

IDA: Inferred from Direct Assay

F

From MGI

GO:0043256

laminin complex

MGI:MGI:67497
PMID:8034675[17]

IDA: Inferred from Direct Assay

C

From MGI

GO:0043257

laminin-8 complex

MGI:MGI:4834177

ISO: Inferred from Sequence Orthology

UniProtKB:P07942

C

From MGI

GO:0043259

laminin-10 complex

MGI:MGI:1097278
PMID:9299121[18]

IPI: Inferred from Physical Interaction

UniProtKB:Q61001
UniProtKB:P02468

C

From MGI

GO:0043259

laminin-10 complex

MGI:MGI:4834177

ISO: Inferred from Sequence Orthology

UniProtKB:P07942

C

From MGI

GO:0048471

perinuclear region of cytoplasm

MGI:MGI:3046598
PMID:15207330[14]

IDA: Inferred from Direct Assay

C

From MGI

colocalizes_with

GO:0005604

basement membrane

MGI:MGI:1095193
PMID:9264260[13]

IDA: Inferred from Direct Assay

C

From MGI


Notes

References

See Help:References for how to manage references in GONUTS.

  1. 1.0 1.1 Yao CC et al. (1996) Laminins promote the locomotion of skeletal myoblasts via the alpha 7 integrin receptor. J Cell Sci 109 ( Pt 13): 3139-50 PubMed GONUTS page
  2. 2.0 2.1 Li J et al. (2003) Laminin-10 is crucial for hair morphogenesis. EMBO J 22: 2400-10 PubMed GONUTS page
  3. 3.0 3.1 Underwood PA et al. (1995) Evidence for the location of a binding sequence for the alpha 2 beta 1 integrin of endothelial cells, in the beta 1 subunit of laminin. Biochem J 309 ( Pt 3): 765-71 PubMed GONUTS page
  4. Bajanca F et al. (2006) Integrin alpha6beta1-laminin interactions regulate early myotome formation in the mouse embryo. Development 133: 1635-44 PubMed GONUTS page
  5. 5.0 5.1 Miner JH et al. (2004) Compositional and structural requirements for laminin and basement membranes during mouse embryo implantation and gastrulation. Development 131: 2247-56 PubMed GONUTS page
  6. Gersdorff N et al. (2005) Basement membrane composition in the early mouse embryo day 7. Dev Dyn 233: 1140-8 PubMed GONUTS page
  7. Abrahamson DR et al. (2003) Laminin-1 reexpression in Alport mouse glomerular basement membranes. Kidney Int 63: 826-34 PubMed GONUTS page
  8. Meyer zum Gottesberge AM & Felix H (2005) Abnormal basement membrane in the inner ear and the kidney of the Mpv17-/- mouse strain: ultrastructural and immunohistochemical investigations. Histochem Cell Biol 124: 507-16 PubMed GONUTS page
  9. Manabe R et al. (2008) Transcriptome-based systematic identification of extracellular matrix proteins. Proc Natl Acad Sci U S A 105: 12849-54 PubMed GONUTS page
  10. Schéele S et al. (2006) Monoclonal anti-mouse laminin antibodies: AL-1 reacts with laminin alpha1 chain, AL-2 with laminin beta1 chain, and AL-4 with the coiled-coil domain of laminin beta1 chain. Matrix Biol 25: 301-5 PubMed GONUTS page
  11. Schuger L et al. (1992) Laminin expression in the mouse lung increases with development and stimulates spontaneous organotypic rearrangement of mixed lung cells. Dev Dyn 195: 43-54 PubMed GONUTS page
  12. Patton BL et al. (1997) Distribution and function of laminins in the neuromuscular system of developing, adult, and mutant mice. J Cell Biol 139: 1507-21 PubMed GONUTS page
  13. 13.0 13.1 Qin P et al. (1997) Localization of basement membrane-associated protein isoforms during development of the ocular surface of mouse eye. Dev Dyn 209: 367-76 PubMed GONUTS page
  14. 14.0 14.1 Sharif KA et al. (2004) Differential regulation of laminin b1 transgene expression in the neonatal and adult mouse brain. Neuroscience 126: 967-78 PubMed GONUTS page
  15. Paraoanu LE & Layer PG (2004) Mouse acetylcholinesterase interacts in yeast with the extracellular matrix component laminin-1beta. FEBS Lett 576: 161-4 PubMed GONUTS page
  16. 16.0 16.1 Ichikawa N et al. (2009) Binding of laminin-1 to monosialoganglioside GM1 in lipid rafts is crucial for neurite outgrowth. J Cell Sci 122: 289-99 PubMed GONUTS page
  17. Utani A et al. (1994) Laminin chain assembly. Specific sequences at the C terminus of the long arm are required for the formation of specific double- and triple-stranded coiled-coil structures. J Biol Chem 269: 19167-75 PubMed GONUTS page
  18. Sorokin LM et al. (1997) Developmental regulation of the laminin alpha5 chain suggests a role in epithelial and endothelial cell maturation. Dev Biol 189: 285-300 PubMed GONUTS page


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