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Search results 701 to 753 out of 753 for Itgb2

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0.025s
Type Details Score
Genotype
Symbol: Itgb2/? Psrs4/Psrs4 Psrs6/Psrs6
Background: involves: C57BL/6J * PL/J
Zygosity: cx
Has Mutant Allele: true
Genotype
Symbol: Itgb2/? Psrs7/?
Background: involves: 129S7/SvEvBrd * C57BL/6J * PL/J
Zygosity: cx
Has Mutant Allele: true
Genotype
Symbol: Itgb2/Itgb2 Psrs1/Psrs1
Background: B6.Cg-(D10Mit126-D10Mit38) Itgb2
Zygosity: cx
Has Mutant Allele: true
Genotype
Symbol: Itgb2/Itgb2 Psrs1/Psrs1
Background: B6.Cg-(D10Mit75-D10Mit271) Itgb2
Zygosity: cx
Has Mutant Allele: true
Publication
First Author: Wu J
Year: 2018
Journal: Proc Natl Acad Sci U S A
Title: Critical role of integrin CD11c in splenic dendritic cell capture of missing-self CD47 cells to induce adaptive immunity.
Volume: 115
Issue: 26
Pages: 6786-6791
Publication
First Author: Xu Q
Year: 2017
Journal: Dis Model Mech
Title: Renal carcinoma/kidney progenitor cell chimera organoid as a novel tumorigenesis gene discovery model.
Volume: 10
Issue: 12
Pages: 1503-1515
Publication
First Author: Bianchi E
Year: 2000
Journal: Nature
Title: Integrin LFA-1 interacts with the transcriptional co-activator JAB1 to modulate AP-1 activity.
Volume: 404
Issue: 6778
Pages: 617-21
Publication
First Author: Ostermann G
Year: 2002
Journal: Nat Immunol
Title: JAM-1 is a ligand of the beta(2) integrin LFA-1 involved in transendothelial migration of leukocytes.
Volume: 3
Issue: 2
Pages: 151-8
Publication
First Author: Lu TT
Year: 2002
Journal: Science
Title: Integrin-mediated long-term B cell retention in the splenic marginal zone.
Volume: 297
Issue: 5580
Pages: 409-12
Protein Domain
Type: Family
Description: Integrins are the major metazoan receptors for cell adhesion to extracellular matrix proteins and, in vertebrates, also play important roles in certain cell-cell adhesions, make transmembrane connections to the cytoskeleton and activate many intracellular signalling pathways [, ]. An integrin receptor is a heterodimer composed of alpha and beta subunits. Each subunit crosses the membrane once, with most of the polypeptide residing in the extracellular space, and has two short cytoplasmic domains. Some members of this family have EGF repeats at the C terminus and also have a vWA domain inserted within the integrin domain at the N terminus.Most integrins recognise relatively short peptide motifs, and in general require an acidic amino acid to be present. Ligand specificity depends upon both the alpha and beta subunits []. There are at least 18 types of alpha and 8 types of beta subunits recognised in humans []. Each alpha subunit tends to associate only with one type of beta subunit, but there are exceptions to this rule []. Each association of alpha and beta subunits has its own binding specificity and signalling properties. Many integrins require activation on the cell surface before they can bind ligands. Integrins frequently intercommunicate, and binding at one integrin receptor activate or inhibit another.Integrin Beta-2 is also referred to as ITGB2 and is known to interact with three different alpha integrin chains: ITGAL, ITGAM and ITGAX. These three integrin heterodimers are associated with leukocyte adhesion deficiency (LAD), which is characterised by recurrent bacterial infections. LFA-1 (ITGB2/ITGAL) is one of the most well studied of these integrins. Engagement of LFA-1 results in increased AP-1 dependent gene expression, which is mediated by the nuclear translocation of JAB1 []. The ligand for LFA-1 is JAM-1, a member of the endothelial immunoglobulin superfamily. JAM-1 contributes to LFA-1 dependent transendothelial migration of leukocytes and LFA-1 mediated arrest of T cells []. Studies of marginal zone (MZ) B cells also showed that LFA-1, together with alpha4beta1, is required for localisation of those cells in the splenic MZ and that these integrins are necessary for lymphoid tissue compartmentalization [].
Protein Coding Gene
Type: protein_coding_gene
Organism: mouse, laboratory
Protein Coding Gene
Type: protein_coding_gene
Organism: Mus caroli
Protein Coding Gene
Type: protein_coding_gene
Organism: mouse, laboratory
Protein Coding Gene
Type: protein_coding_gene
Organism: mouse, laboratory
Protein Coding Gene
Type: protein_coding_gene
Organism: mouse, laboratory
Protein Coding Gene
Type: protein_coding_gene
Organism: mouse, laboratory
Protein Coding Gene
Type: protein_coding_gene
Organism: mouse, laboratory
Protein Coding Gene
Type: protein_coding_gene
Organism: mouse, laboratory
Protein Coding Gene
Type: protein_coding_gene
Organism: mouse, laboratory
Protein Coding Gene
Type: protein_coding_gene
Organism: mouse, laboratory
Protein Coding Gene
Type: protein_coding_gene
Organism: mouse, laboratory
Protein Coding Gene
Type: protein_coding_gene
Organism: mouse, laboratory
Protein Coding Gene
Type: protein_coding_gene
Organism: mouse, laboratory
Protein Coding Gene
Type: protein_coding_gene
Organism: mouse, laboratory
Protein Coding Gene
Type: protein_coding_gene
Organism: mouse, laboratory
Protein Coding Gene
Type: protein_coding_gene
Organism: mouse, laboratory
Protein Coding Gene
Type: protein_coding_gene
Organism: mouse, laboratory
Protein Coding Gene
Type: protein_coding_gene
Organism: mouse, laboratory
Protein Coding Gene
Type: protein_coding_gene
Organism: Mus pahari
Protein Coding Gene
Type: protein_coding_gene
Organism: Mus spretus
Publication
First Author: Chen Y
Year: 1998
Journal: J Biol Chem
Title: Identification of pactolus, an integrin beta subunit-like cell-surface protein preferentially expressed by cells of the bone marrow.
Volume: 273
Issue: 15
Pages: 8711-8
Publication
First Author: Margraf RL
Year: 1999
Journal: Mamm Genome
Title: Genomic organization, chromosomal localization, and transcriptional variants of the murine Pactolus gene.
Volume: 10
Issue: 11
Pages: 1075-81
Publication
First Author: Garrison S
Year: 2001
Journal: J Biol Chem
Title: Functional characterization of Pactolus, a beta-integrin-like protein preferentially expressed by neutrophils.
Volume: 276
Issue: 38
Pages: 35500-11
Publication
First Author: Garrison S
Year: 2003
Journal: J Immunol
Title: Surface translocation of pactolus is induced by cell activation and death, but is not required for neutrophil migration and function.
Volume: 171
Issue: 12
Pages: 6795-806
Publication
First Author: Hojgaard A
Year: 2006
Journal: Immunology
Title: Altered localization of CXCL13 expressing cells in mice deficient in Pactolus following an inflammatory stimulus.
Volume: 119
Issue: 2
Pages: 212-23
Protein
Organism: Mus musculus/domesticus
Length: 54  
Fragment?: true
Protein
Organism: Mus musculus/domesticus
Length: 56  
Fragment?: false
Protein
Organism: Mus musculus/domesticus
Length: 480  
Fragment?: false
Protein
Organism: Mus musculus/domesticus
Length: 130  
Fragment?: true
Publication
First Author: Hale JS
Year: 2006
Journal: J Leukoc Biol
Title: Transcriptional control of Pactolus: evidence of a negative control region and comparison with its evolutionary paralogue, CD18 (beta2 integrin).
Volume: 80
Issue: 2
Pages: 383-98
Protein
Organism: Mus musculus/domesticus
Length: 771  
Fragment?: false
Protein
Organism: Mus musculus/domesticus
Length: 738  
Fragment?: false
Protein
Organism: Mus musculus/domesticus
Length: 795  
Fragment?: false
Protein
Organism: Mus musculus/domesticus
Length: 770  
Fragment?: false
Publication
First Author: Demetriou MC
Year: 2004
Journal: J Cell Biochem
Title: Integrin clipping: a novel adhesion switch?
Volume: 91
Issue: 1
Pages: 26-35
Publication
First Author: Cheresh DA
Year: 1989
Journal: Cell
Title: A novel vitronectin receptor integrin (alpha v beta x) is responsible for distinct adhesive properties of carcinoma cells.
Volume: 57
Issue: 1
Pages: 59-69
Publication  
First Author: Arnaout MA
Year: 2002
Journal: Immunol Rev
Title: Integrin structure: new twists and turns in dynamic cell adhesion.
Volume: 186
Pages: 125-40
Publication
First Author: Hynes RO
Year: 2002
Journal: Cell
Title: Integrins: bidirectional, allosteric signaling machines.
Volume: 110
Issue: 6
Pages: 673-87
Publication
First Author: Bökel C
Year: 2002
Journal: Dev Cell
Title: Integrins in development: moving on, responding to, and sticking to the extracellular matrix.
Volume: 3
Issue: 3
Pages: 311-21
Publication
First Author: Pletcher MT
Year: 2001
Journal: Genomics
Title: Use of comparative physical and sequence mapping to annotate mouse chromosome 16 and human chromosome 21.
Volume: 74
Issue: 1
Pages: 45-54
Publication      
First Author: Wellcome Trust Sanger Institute
Year: 2009
Journal: MGI Direct Data Submission
Title: Alleles produced for the KOMP project by the Wellcome Trust Sanger Institute
Publication        
First Author: Mouse Genome Informatics Scientific Curators
Year: 2003
Title: MGI Sequence Curation Reference
Publication
First Author: Kawai J
Year: 2001
Journal: Nature
Title: Functional annotation of a full-length mouse cDNA collection.
Volume: 409
Issue: 6821
Pages: 685-90