Integrin beta-1 (P09055)

Uniprot ID P09055
Protein Name Integrin beta-1
Gene Name Itgb1
Species Mus musculus (Mouse)
Signal peptide(a) Y Secretome P(b) 0.306
Function Integrins alpha-1/beta-1, alpha-2/beta-1, alpha-10/beta-1 and alpha-11/beta-1 are receptors for collagen. Integrins alpha-1/beta-1 and alpha-2/beta-2 recognize the proline-hydroxylated sequence G-F-P-G-E-R in collagen. Integrins alpha-2/beta-1, alpha-3/beta-1, alpha-4/beta-1, alpha-5/beta-1, alpha-8/beta-1, alpha-10/beta-1, alpha-11/beta-1 and alpha-V/beta-1 are receptors for fibronectin. Alpha-4/beta-1 recognizes one or more domains within the alternatively spliced CS-1 and CS-5 regions of fibronectin. Integrin alpha-5/beta-1 is a receptor for fibrinogen. Integrin alpha-1/beta-1, alpha-2/beta-1, alpha-6/beta-1 and alpha-7/beta-1 are receptors for lamimin. Integrin alpha-4/beta-1 is a receptor for VCAM1 and recognizes the sequence Q-I-D-S in VCAM1. Integrin alpha-9/beta-1 is a receptor for VCAM1, cytotactin and osteopontin. It recognizes the sequence A-E-I-D-G-I-E-L in cytotactin. Integrin alpha-3/beta-1 is a receptor for epiligrin, thrombospondin and CSPG4. Integrin alpha-3/beta-1 provides a docking site for FAP (seprase) at invadopodia plasma membranes in a collagen-dependent manner and hence may participate in the adhesion, formation of invadopodia and matrix degradation processes, promoting cell invasion. Alpha-3/beta-1 may mediate with LGALS3 the stimulation by CSPG4 of endothelial cells migration. Integrin alpha-V/beta-1 is a receptor for vitronectin. Beta-1 integrins recognize the sequence R-G-D in a wide array of ligands. When associated with alpha-7/beta-1 integrin, regulates cell adhesion and laminin matrix deposition. Involved in promoting endothelial cell motility and angiogenesis. Involved in osteoblast compaction through the fibronectin fibrillogenesis cell-mediated matrix assembly process and the formation of mineralized bone nodules. May be involved in up-regulation of the activity of kinases such as PKC via binding to KRT1. Together with KRT1 and RACK1, serves as a platform for SRC activation or inactivation. Plays a mechanistic adhesive role during telophase, required for the successful completion of cytokinesis. ITGA4:ITGB1 binds to fractalkine (CX3CL1) and may act as its coreceptor in CX3CR1-dependent fractalkine signaling (By similarity). ITGA4:ITGB1 and ITGA5:ITGB1 bind to PLA2G2A via a site (site 2) which is distinct from the classical ligand-binding site (site 1) and this induces integrin conformational changes and enhanced ligand binding to site 1 (By similarity). ITGA5:ITGB1 acts as a receptor for fibrillin-1 (FBN1) and mediates R-G-D-dependent cell adhesion to FBN1 (By similarity). ITGA5:ITGB1 is a receptor for IL1B and binding is essential for IL1B signaling (By similarity). .Isoform 2: Isoform 2 displaces isoform 1 in striated muscles.
GO - Molecular function
  • actin binding : ISO:MGI
  • alpha-actinin binding : ISO:MGI
  • C-X3-C chemokine binding : IEA:Ensembl
  • cadherin binding : ISO:MGI
  • cell adhesion molecule binding : ISO:MGI
  • collagen binding : ISO:MGI
  • collagen binding involved in cell-matrix adhesion : ISO:MGI
  • fibronectin binding : ISO:MGI
  • integrin binding : IPI:MGI
  • kinase binding : ISO:MGI
  • laminin binding : ISO:MGI
  • metal ion binding : IEA:UniProtKB-KW
  • peptide binding : ISO:MGI
  • protease binding : ISO:MGI
  • protein domain specific binding : ISO:MGI
  • protein heterodimerization activity : ISS:UniProtKB
  • protein kinase binding : ISO:MGI
  • protein-containing complex binding : ISO:MGI
  • signaling receptor activity : IEA:InterPro
  • signaling receptor binding : ISO:MGI
GO - Biological process
  • axon extension : IMP:MGI
  • basement membrane organization : IMP:CAFA
  • bicellular tight junction assembly : ISO:MGI
  • calcium-independent cell-matrix adhesion : ISO:MGI
  • cardiac muscle cell differentiation : IMP:MGI
  • cardiac muscle tissue development : IMP:MGI
  • cell adhesion : ISO:MGI
  • cell adhesion mediated by integrin : ISS:UniProtKB
  • cell fate specification : IMP:MGI
  • cell migration : IMP:MGI
  • cell migration involved in sprouting angiogenesis : IMP:MGI
  • cell-cell adhesion mediated by integrin : IEA:Ensembl
  • cell-matrix adhesion : IMP:MGI
  • cell-substrate adhesion : ISO:MGI
  • cellular calcium ion homeostasis : ISO:MGI
  • cellular response to low-density lipoprotein particle stimulus : IDA:UniProtKB
  • dendrite morphogenesis : IMP:MGI
  • formation of radial glial scaffolds : IMP:MGI
  • G1/S transition of mitotic cell cycle : IMP:MGI
  • germ cell migration : IMP:MGI
  • heterotypic cell-cell adhesion : ISO:MGI
  • in utero embryonic development : IMP:MGI
  • integrin-mediated signaling pathway : ISO:MGI
  • leukocyte cell-cell adhesion : ISO:MGI
  • leukocyte tethering or rolling : ISO:MGI
  • mesodermal cell differentiation : IEA:Ensembl
  • negative regulation of anoikis : ISO:MGI
  • negative regulation of cell differentiation : IMP:MGI
  • negative regulation of cell projection organization : ISO:MGI
  • negative regulation of cell proliferation : ISO:MGI
  • negative regulation of neuron differentiation : ISO:MGI
  • negative regulation of Rho protein signal transduction : IGI:MGI
  • neuron projection development : IMP:MGI
  • positive regulation of angiogenesis : ISO:MGI
  • positive regulation of apoptotic process : ISO:MGI
  • positive regulation of cell migration : ISO:MGI
  • positive regulation of cell proliferation : IMP:MGI
  • positive regulation of cell-substrate adhesion : ISO:MGI
  • positive regulation of endocytosis : ISO:MGI
  • positive regulation of GTPase activity : ISO:MGI
  • positive regulation of MAPK cascade : ISO:MGI
  • positive regulation of neuron differentiation : ISO:MGI
  • positive regulation of neuron projection development : ISO:MGI
  • positive regulation of peptidyl-tyrosine phosphorylation : ISO:MGI
  • positive regulation of protein kinase B signaling : ISO:MGI
  • positive regulation of protein localization to plasma membrane : ISS:UniProtKB
  • positive regulation of signaling receptor activity : ISO:MGI
  • protein transport within lipid bilayer : ISO:MGI
  • receptor internalization : IDA:UniProtKB
  • regulation of cell cycle : IMP:MGI
  • regulation of collagen catabolic process : ISS:UniProtKB
  • regulation of G-protein coupled receptor protein signaling pathway : ISO:MGI
  • sarcomere organization : IMP:MGI
  • tissue homeostasis : ISO:MGI
  • visual learning : IMP:MGI
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(a) The Signal peptide D-score cutoff for "YES"(having signal peptide) is 0.45.
(b) Non-classically secreted proteins should obtain an NN-score(Neural Networks score) exceeding the normal threshold of 0.5, but not at the same time be predicted to contain a signal peptide.