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Search results 701 to 800 out of 825 for Plat

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Type Details Score
Genotype
Symbol: Gt(ROSA)26Sor/Gt(ROSA)26Sor<+> Itgb1/Itgb1 Tg(PLAT-cre)116Sdu/?
Background: involves: 129S1/Sv * 129S2/SvPas * 129X1/SvJ
Zygosity: cn
Has Mutant Allele: true
Genotype
Symbol: Gt(ROSA)26Sor/Gt(ROSA)26Sor<+> Itgb1/Itgb1<+> Tg(PLAT-cre)116Sdu/?
Background: involves: 129S1/Sv * 129S2/SvPas * 129X1/SvJ
Zygosity: cn
Has Mutant Allele: true
Genotype
Symbol: Gt(ROSA)26Sor/Gt(ROSA)26Sor<+> Itgb1/Itgb1<+> Sox10/Sox10<+> Tg(PLAT-cre)116Sdu/?
Background: involves: 129S1/Sv * 129S2/SvPas * 129X1/SvJ
Zygosity: cn
Has Mutant Allele: true
Publication
First Author: Iha M
Year: 2012
Journal: Reproduction
Title: Effect of ectopic expression of homeoprotein EGAM1C on the cell morphology, growth, and differentiation in a mouse embryonic stem cell line, MG1.19 cells.
Volume: 143
Issue: 4
Pages: 477-89
Publication
First Author: Szklarczyk K
Year: 2012
Journal: Genes Brain Behav
Title: Genotype-dependent consequences of traumatic stress in four inbred mouse strains.
Volume: 11
Issue: 8
Pages: 977-85
Protein Domain
Type: Homologous_superfamily
Description: This entry represents a domain superfamily found in a variety of membrane or lipid associated proteins. It is known as the PLAT (Polycystin-1, Lipoxygenase, Alpha-Toxin) domain or LH2 (Lipoxygenase homology) domain, is found in a variety of membrane or lipid associated proteins. Structurally, this domain forms a β-sandwich composed of two sheets of four strands each [, , ]. The most highly conserved regions coincide with the β-strands, with most of the highly conserved residues being buried within the protein. An exception to this is a surface lysine or arginine that occurs on the surface of the fifth β-strand of the eukaryotic domains. In pancreatic lipase, the lysine in this position forms a salt bridge with the procolipase protein. The conservation of a charged surface residue may indicate the location of a conserved ligand-binding site. It is thought that this domain may mediate membrane attachment via other protein binding partners.
Protein Domain
Type: Domain
Description: This entry represents a domain found in a variety of membrane or lipid associated proteins. It is known as the PLAT (Polycystin-1, Lipoxygenase, Alpha-Toxin) domain or LH2 (Lipoxygenase homology) domain, is found in a variety of membrane or lipid associated proteins. Structurally, this domain forms a β-sandwich composed of two sheets of four strands each [, , ]. The most highly conserved regions coincide with the β-strands, with most of the highly conserved residues being buried within the protein. An exception to this is a surface lysine or arginine that occurs on the surface of the fifth β-strand of the eukaryotic domains. In pancreatic lipase, the lysine in this position forms a salt bridge with the procolipase protein. The conservation of a charged surface residue may indicate the location of a conserved ligand-binding site. It is thought that this domain may mediate membrane attachment via other protein binding partners.
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
Protein
Organism: Mus musculus/domesticus
Length: 2068  
Fragment?: false
Protein
Organism: Mus musculus/domesticus
Length: 2080  
Fragment?: false
Protein
Organism: Mus musculus/domesticus
Length: 996  
Fragment?: false
Protein
Organism: Mus musculus/domesticus
Length: 2216  
Fragment?: false
Publication
First Author: Tomchick DR
Year: 2001
Journal: Biochemistry
Title: Structural and functional characterization of second-coordination sphere mutants of soybean lipoxygenase-1.
Volume: 40
Issue: 25
Pages: 7509-17
Publication
First Author: Delrieu I
Year: 2002
Journal: Mol Biochem Parasitol
Title: PSLAP, a protein with multiple adhesive motifs, is expressed in Plasmodium falciparum gametocytes.
Volume: 121
Issue: 1
Pages: 11-20
Publication  
First Author: Maphis NM
Year: 2017
Journal: Front Mol Neurosci
Title: Whole Genome Expression Analysis in a Mouse Model of Tauopathy Identifies MECP2 as a Possible Regulator of Tau Pathology.
Volume: 10
Pages: 69
Protein
Organism: Mus musculus/domesticus
Length: 234  
Fragment?: true
Publication  
First Author: Matsuwaki T
Year: 2017
Journal: Brain Behav Immun
Title: Involvement of interleukin-1 type 1 receptors in lipopolysaccharide-induced sickness responses.
Volume: 66
Pages: 165-176
Publication
First Author: Broders-Bondon F
Year: 2012
Journal: Dev Biol
Title: N-cadherin and β1-integrins cooperate during the development of the enteric nervous system.
Volume: 364
Issue: 2
Pages: 178-91
Publication
First Author: Broders-Bondon F
Year: 2016
Journal: Dev Biol
Title: Control of the collective migration of enteric neural crest cells by the Complement anaphylatoxin C3a and N-cadherin.
Volume: 414
Issue: 1
Pages: 85-99
Publication
First Author: Breau MA
Year: 2008
Journal: Proc Natl Acad Sci U S A
Title: A nonneural epithelial domain of embryonic cranial neural folds gives rise to ectomesenchyme.
Volume: 105
Issue: 22
Pages: 7750-5
Publication
First Author: Watanabe Y
Year: 2013
Journal: Dev Biol
Title: Sox10 and Itgb1 interaction in enteric neural crest cell migration.
Volume: 379
Issue: 1
Pages: 92-106
Publication
First Author: Breau MA
Year: 2009
Journal: Development
Title: Beta1 integrins are required for the invasion of the caecum and proximal hindgut by enteric neural crest cells.
Volume: 136
Issue: 16
Pages: 2791-801
Publication
First Author: Chevalier NR
Year: 2021
Journal: Commun Biol
Title: A neural crest cell isotropic-to-nematic phase transition in the developing mammalian gut.
Volume: 4
Issue: 1
Pages: 770
Publication
First Author: John A
Year: 2012
Journal: Development
Title: Bcl11a is required for neuronal morphogenesis and sensory circuit formation in dorsal spinal cord development.
Volume: 139
Issue: 10
Pages: 1831-41
Publication
First Author: Tamura Y
Year: 2011
Journal: Arterioscler Thromb Vasc Biol
Title: Neural crest-derived stem cells migrate and differentiate into cardiomyocytes after myocardial infarction.
Volume: 31
Issue: 3
Pages: 582-9
Publication
First Author: Gacem N
Year: 2020
Journal: Nat Commun
Title: ADAR1 mediated regulation of neural crest derived melanocytes and Schwann cell development.
Volume: 11
Issue: 1
Pages: 198
Publication
First Author: Coulpier F
Year: 2009
Journal: Glia
Title: Novel features of boundary cap cells revealed by the analysis of newly identified molecular markers.
Volume: 57
Issue: 13
Pages: 1450-7
Publication
First Author: Huettl RE
Year: 2011
Journal: PLoS Biol
Title: Npn-1 contributes to axon-axon interactions that differentially control sensory and motor innervation of the limb.
Volume: 9
Issue: 2
Pages: e1001020
Publication  
First Author: Chevalier NR
Year: 2021
Journal: Front Cell Dev Biol
Title: How Smooth Muscle Contractions Shape the Developing Enteric Nervous System.
Volume: 9
Pages: 678975
Publication
First Author: Yoshida Y
Year: 2006
Journal: Neuron
Title: PlexinA1 signaling directs the segregation of proprioceptive sensory axons in the developing spinal cord.
Volume: 52
Issue: 5
Pages: 775-88
Genotype
Symbol: Cdh2/Cdh2<+> Itgb1/Itgb1<+> Gt(ROSA)26Sor/Gt(ROSA)26Sor<+> Tg(PLAT-cre)116Sdu/?
Background: involves: 129 * C57BL/6 * DBA/2
Zygosity: cn
Has Mutant Allele: true
Genotype
Symbol: Cdh2/Cdh2 Itgb1/Itgb1<+> Gt(ROSA)26Sor/Gt(ROSA)26Sor<+> Tg(PLAT-cre)116Sdu/?
Background: involves: 129 * C57BL/6 * DBA/2
Zygosity: cn
Has Mutant Allele: true
Genotype
Symbol: Cdh2/Cdh2 Itgb1/Itgb1 Gt(ROSA)26Sor/Gt(ROSA)26Sor<+> Tg(PLAT-cre)116Sdu/?
Background: involves: 129 * C57BL/6 * DBA/2
Zygosity: cn
Has Mutant Allele: true
Genotype
Symbol: Cdh2/Cdh2<+> Itgb1/Itgb1 Gt(ROSA)26Sor/Gt(ROSA)26Sor<+> Tg(PLAT-cre)116Sdu/?
Background: involves: 129 * C57BL/6 * DBA/2
Zygosity: cn
Has Mutant Allele: true
Genotype
Symbol: Gt(ROSA)26Sor/Gt(ROSA)26Sor<+> Itgb1/Itgb1 Sox10/Sox10<+> Tg(PLAT-cre)116Sdu/?
Background: involves: 129S1/Sv * 129S2/SvPas * 129X1/SvJ
Zygosity: cn
Has Mutant Allele: true
Publication  
First Author: Womack JE
Year: 1989
Journal: Cytogenet Cell Genet
Title: Syntenic mapping of 37 loci in cattle. Chromosomal conservation with mouse and man.
Volume: 51
Pages: 1109 (Abstr.)
Publication
First Author: Kubota Y
Year: 2011
Journal: J Exp Med
Title: Isolation and function of mouse tissue resident vascular precursors marked by myelin protein zero.
Volume: 208
Issue: 5
Pages: 949-60
Publication
First Author: Lagerström MC
Year: 2010
Journal: Neuron
Title: VGLUT2-dependent sensory neurons in the TRPV1 population regulate pain and itch.
Volume: 68
Issue: 3
Pages: 529-42
Publication
First Author: Ohayon D
Year: 2015
Journal: Dev Cell
Title: Zeb family members and boundary cap cells underlie developmental plasticity of sensory nociceptive neurons.
Volume: 33
Issue: 3
Pages: 343-50
Publication
First Author: Kalamarides M
Year: 2011
Journal: Oncogene
Title: Identification of a progenitor cell of origin capable of generating diverse meningioma histological subtypes.
Volume: 30
Issue: 20
Pages: 2333-44
Publication
First Author: Van Ho AT
Year: 2011
Journal: Dev Cell
Title: Neural crest cell lineage restricts skeletal muscle progenitor cell differentiation through Neuregulin1-ErbB3 signaling.
Volume: 21
Issue: 2
Pages: 273-87
Publication
First Author: Huettl RE
Year: 2011
Journal: Dev Biol
Title: Cranial nerve fasciculation and Schwann cell migration are impaired after loss of Npn-1.
Volume: 359
Issue: 2
Pages: 230-41
Publication
First Author: Vahedi-Hunter TA
Year: 2018
Journal: Sci Rep
Title: Cas Adaptor Proteins Coordinate Sensory Axon Fasciculation.
Volume: 8
Issue: 1
Pages: 5996
Publication
First Author: Coulpier F
Year: 2010
Journal: J Neurosci
Title: CNS/PNS boundary transgression by central glia in the absence of Schwann cells or Krox20/Egr2 function.
Volume: 30
Issue: 17
Pages: 5958-67
Protein
Organism: Mus musculus/domesticus
Length: 1371  
Fragment?: false
Protein
Organism: Mus musculus/domesticus
Length: 2070  
Fragment?: false
Protein
Organism: Mus musculus/domesticus
Length: 1231  
Fragment?: true
Publication
First Author: de Nooij JC
Year: 2013
Journal: Neuron
Title: Etv1 inactivation reveals proprioceptor subclasses that reflect the level of NT3 expression in muscle targets.
Volume: 77
Issue: 6
Pages: 1055-68
Publication
First Author: Coppola E
Year: 2010
Journal: Proc Natl Acad Sci U S A
Title: Epibranchial ganglia orchestrate the development of the cranial neurogenic crest.
Volume: 107
Issue: 5
Pages: 2066-71
Protein
Organism: Mus musculus/domesticus
Length: 473  
Fragment?: false
Protein
Organism: Mus musculus/domesticus
Length: 474  
Fragment?: false
Protein
Organism: Mus musculus/domesticus
Length: 500  
Fragment?: false
Protein
Organism: Mus musculus/domesticus
Length: 510  
Fragment?: false
Protein
Organism: Mus musculus/domesticus
Length: 482  
Fragment?: false
Protein
Organism: Mus musculus/domesticus
Length: 465  
Fragment?: false
Protein
Organism: Mus musculus/domesticus
Length: 474  
Fragment?: false
Protein
Organism: Mus musculus/domesticus
Length: 474  
Fragment?: false
Protein
Organism: Mus musculus/domesticus
Length: 474  
Fragment?: false
Protein
Organism: Mus musculus/domesticus
Length: 474  
Fragment?: false
Protein
Organism: Mus musculus/domesticus
Length: 459  
Fragment?: false
Protein
Organism: Mus musculus/domesticus
Length: 1479  
Fragment?: true
Protein
Organism: Mus musculus/domesticus
Length: 474  
Fragment?: false
Protein
Organism: Mus musculus/domesticus
Length: 474  
Fragment?: false
Protein
Organism: Mus musculus/domesticus
Length: 474  
Fragment?: false
Protein
Organism: Mus musculus/domesticus
Length: 474  
Fragment?: false
Protein
Organism: Mus musculus/domesticus
Length: 500  
Fragment?: false
Protein
Organism: Mus musculus/domesticus
Length: 474  
Fragment?: false
Protein
Organism: Mus musculus/domesticus
Length: 474  
Fragment?: false
Protein
Organism: Mus musculus/domesticus
Length: 474  
Fragment?: false
Protein
Organism: Mus musculus/domesticus
Length: 500  
Fragment?: false
Protein
Organism: Mus musculus/domesticus
Length: 474  
Fragment?: false
Protein
Organism: Mus musculus/domesticus
Length: 474  
Fragment?: false
Protein
Organism: Mus musculus/domesticus
Length: 474  
Fragment?: false
Protein
Organism: Mus musculus/domesticus
Length: 474  
Fragment?: false
Protein
Organism: Mus musculus/domesticus
Length: 464  
Fragment?: false
Protein
Organism: Mus musculus/domesticus
Length: 500  
Fragment?: false
Protein
Organism: Mus musculus/domesticus
Length: 425  
Fragment?: false
Publication
First Author: Wang P
Year: 2024
Journal: Nat Commun
Title: LOXHD1 is indispensable for maintaining TMC1 auditory mechanosensitive channels at the site of force transmission.
Volume: 15
Issue: 1
Pages: 7865
Protein
Organism: Mus musculus/domesticus
Length: 1274  
Fragment?: false
Protein
Organism: Mus musculus/domesticus
Length: 1287  
Fragment?: false
Protein
Organism: Mus musculus/domesticus
Length: 2201  
Fragment?: false