Gene description for Cfl1
Gene name cofilin 1, non-muscle
Gene symbol Cfl1
Other names/aliases -
Species Rattus norvegicus
 Database cross references - Cfl1
ExoCarta ExoCarta_29271
Vesiclepedia VP_29271
Entrez Gene 29271
UniProt P45592  
 Cfl1 identified in sEVs derived from the following tissue/cell type
Hepatocytes 19367702    
Reticulocytes 21828046    
Reticulocytes 21828046    
Reticulocytes 21828046    
Reticulocytes 21828046    
Reticulocytes 21828046    
Reticulocytes 21828046    
Reticulocytes 21828046    
Urine 20535238    
 Gene ontology annotations for Cfl1
Molecular Function
    actin binding GO:0003779 IMP
    signaling receptor binding GO:0005102 ISO
    protein binding GO:0005515 IPI
    protein phosphatase binding GO:0019903 IPI
    actin filament binding GO:0051015 IBA
    actin filament binding GO:0051015 IDA
    actin filament binding GO:0051015 IEA
    actin filament binding GO:0051015 ISO
    actin filament binding GO:0051015 ISS
    phosphatidylinositol bisphosphate binding GO:1902936 IPI
Biological Process
    mitotic cytokinesis GO:0000281 IBA
    mitotic cytokinesis GO:0000281 ISO
    neural crest cell migration GO:0001755 ISO
    neural fold formation GO:0001842 ISO
    protein phosphorylation GO:0006468 ISO
    protein import into nucleus GO:0006606 IMP
    cytoskeleton organization GO:0007010 ISO
    cytoskeleton organization GO:0007010 ISS
    actin filament organization GO:0007015 ISO
    actin filament organization GO:0007015 ISO
    actin filament organization GO:0007015 ISS
    negative regulation of cell adhesion GO:0007162 IMP
    response to virus GO:0009615 ISO
    positive regulation of lamellipodium assembly GO:0010592 IMP
    negative regulation of lamellipodium assembly GO:0010593 IMP
    response to organic cyclic compound GO:0014070 IEP
    response to activity GO:0014823 IEP
    hippocampus development GO:0021766 IEP
    regulation of cell morphogenesis GO:0022604 ISO
    regulation of cell morphogenesis GO:0022604 ISS
    establishment of cell polarity GO:0030010 ISO
    cell projection organization GO:0030030 IDA
    actin filament depolymerization GO:0030042 IEA
    actin filament depolymerization GO:0030042 ISO
    actin filament fragmentation GO:0030043 IBA
    actin filament fragmentation GO:0030043 ISO
    positive regulation of cell growth GO:0030307 IMP
    negative regulation of actin filament depolymerization GO:0030835 IMP
    positive regulation of actin filament depolymerization GO:0030836 ISO
    positive regulation of actin filament depolymerization GO:0030836 ISO
    positive regulation of synaptic plasticity GO:0031915 IMP
    negative regulation of actin filament bundle assembly GO:0032232 IMP
    positive regulation of embryonic development GO:0040019 ISO
    positive regulation of embryonic development GO:0040019 ISS
    response to amino acid GO:0043200 ISO
    positive regulation by host of viral process GO:0044794 ISO
    negative regulation of cell size GO:0045792 IDA
    positive regulation of proteolysis GO:0045862 IMP
    cell motility GO:0048870 ISO
    modulation of chemical synaptic transmission GO:0050804 EXP
    modulation of chemical synaptic transmission GO:0050804 IDA
    actin filament severing GO:0051014 IBA
    establishment of spindle localization GO:0051293 ISO
    establishment of spindle localization GO:0051293 ISS
    negative regulation of unidimensional cell growth GO:0051511 IMP
    positive regulation of focal adhesion assembly GO:0051894 IMP
    positive regulation of dendritic spine development GO:0060999 IMP
    regulation of dendritic spine morphogenesis GO:0061001 ISO
    regulation of dendritic spine morphogenesis GO:0061001 ISS
    cellular response to hydrogen peroxide GO:0070301 IDA
    cellular response to interleukin-1 GO:0071347 IDA
    cellular response to interleukin-6 GO:0071354 IDA
    cellular response to tumor necrosis factor GO:0071356 IDA
    cellular response to ether GO:0071362 IEP
    cellular response to epidermal growth factor stimulus GO:0071364 IEP
    cellular response to epidermal growth factor stimulus GO:0071364 IMP
    modification of postsynaptic actin cytoskeleton GO:0098885 EXP
    modification of postsynaptic actin cytoskeleton GO:0098885 IDA
    negative regulation of dendritic spine maintenance GO:1902951 IMP
    negative regulation of dendritic spine maintenance GO:1902951 NAS
    positive regulation of NMDA glutamate receptor activity GO:1904783 IMP
    positive regulation of protein localization to cell leading edge GO:1905873 IMP
    negative regulation of postsynaptic density organization GO:1905875 IMP
    cellular response to insulin-like growth factor stimulus GO:1990314 IDA
    negative regulation of cell motility GO:2000146 IMP
    positive regulation of cell motility GO:2000147 IMP
    positive regulation of establishment of cell polarity regulating cell shape GO:2000784 IMP
    positive regulation of barbed-end actin filament capping GO:2000814 IMP
Subcellular Localization
    cytoplasm GO:0005737 IBA
    cytoplasm GO:0005737 ISO
    cell-cell junction GO:0005911 ISO
    focal adhesion GO:0005925 ISO
    actin cytoskeleton GO:0015629 IBA
    actin cytoskeleton GO:0015629 IEA
    nuclear matrix GO:0016363 IEA
    lamellipodium GO:0030027 IBA
    lamellipodium GO:0030027 IDA
    lamellipodium GO:0030027 ISO
    filopodium GO:0030175 IDA
    growth cone GO:0030426 IDA
    cortical actin cytoskeleton GO:0030864 ISO
    cell leading edge GO:0031252 IDA
    lamellipodium membrane GO:0031258 IEA
    mitochondrial membrane GO:0031966 IDA
    ruffle membrane GO:0032587 IEA
    neuronal cell body GO:0043025 IDA
    dendritic spine GO:0043197 IDA
    cofilin-actin rod GO:0090732 IDA
    synaptic membrane GO:0097060 IDA
    glutamatergic synapse GO:0098978 EXP
    glutamatergic synapse GO:0098978 IDA
    glutamatergic synapse GO:0098978 ISO
    postsynaptic density, intracellular component GO:0099092 ISO
 Experiment description of studies that identified Cfl1 in sEVs
1
Experiment ID 35
MISEV standards
✔
CEM
Biophysical techniques
✔
TSG101|Alix|CD81|CD63
Enriched markers
✔
HSPA5
Negative markers
✘ Particle analysis
Identified molecule protein
Identification method Mass spectrometry
PubMed ID 19367702    
Organism Rattus norvegicus
Experiment description Characterization and Comprehensive Proteome Profiling of Exosomes Secreted by Hepatocytes.
Authors "Conde-Vancells J, Rodriguez-Suarez E, Embade N, Gil D, Matthiesen R, Valle M, Elortza F, Lu SC, Mato JM, Falcon-Perez JM"
Journal name JPR
Publication year 2008
Sample Hepatocytes
Sample name Hepatocytes
Isolation/purification methods Differential centrifugation
Filtration
Sucrose density gradient
Flotation density -
Molecules identified in the study Protein
Methods used in the study Mass spectrometry [QTOF]
Western blotting
2
Experiment ID 90
MISEV standards
✔
EM
Biophysical techniques
✔
HSC70|HSP90|TSG101|MHCI
Enriched markers
✘ Negative markers
✘ Particle analysis
Identified molecule protein
Identification method Mass spectrometry [Orbitrap]
PubMed ID 21828046    
Organism Rattus norvegicus
Experiment description The proteo-lipidic composition of exosomes changes during reticulocyte maturation.
Authors "Carayon K, Chaoui K, Ronzier E, Lazar I, Bertrand-Michel J, Roques V, Balor S, Terce F, Lopez A, Salome L, Joly E"
Journal name JBC
Publication year 2011
Sample Reticulocytes
Sample name Reticulocytes - D2 Rep 1
Isolation/purification methods Differential centrifugation
Ultracentrifugation
Sucrose density gradient
Flotation density 1.16-1.21 g/mL
Molecules identified in the study Protein
Lipids
Methods used in the study Mass spectrometry [QSTAR]
Mass spectrometry [Orbitrap]
Western blotting
3
Experiment ID 94
MISEV standards
✔
EM
Biophysical techniques
✔
TSG101|HSP90|HSC70|MHCI
Enriched markers
✘ Negative markers
✘ Particle analysis
Identified molecule protein
Identification method Mass spectrometry [Orbitrap]
PubMed ID 21828046    
Organism Rattus norvegicus
Experiment description The proteo-lipidic composition of exosomes changes during reticulocyte maturation.
Authors "Carayon K, Chaoui K, Ronzier E, Lazar I, Bertrand-Michel J, Roques V, Balor S, Terce F, Lopez A, Salome L, Joly E."
Journal name JBC
Publication year 2011
Sample Reticulocytes
Sample name Reticulocytes - D4 Rep 1
Isolation/purification methods Differential centrifugation
Ultracentrifugation
Sucrose density gradient
Flotation density 1.16-1.21 g/mL
Molecules identified in the study Protein
Lipids
Methods used in the study Mass spectrometry [QSTAR]
Mass spectrometry [Orbitrap]
Western blotting
4
Experiment ID 95
MISEV standards
✔
EM
Biophysical techniques
✔
TSG101|HSP90|HSC70|MHCI
Enriched markers
✘ Negative markers
✘ Particle analysis
Identified molecule protein
Identification method Mass spectrometry [Orbitrap]
PubMed ID 21828046    
Organism Rattus norvegicus
Experiment description The proteo-lipidic composition of exosomes changes during reticulocyte maturation.
Authors "Carayon K, Chaoui K, Ronzier E, Lazar I, Bertrand-Michel J, Roques V, Balor S, Terce F, Lopez A, Salome L, Joly E."
Journal name JBC
Publication year 2011
Sample Reticulocytes
Sample name Reticulocytes - D7 Rep 1
Isolation/purification methods Differential centrifugation
Ultracentrifugation
Sucrose density gradient
Flotation density 1.13-1.25 g/mL
Molecules identified in the study Protein
Lipids
Methods used in the study Mass spectrometry [QSTAR]
Mass spectrometry [Orbitrap]
Western blotting
5
Experiment ID 96
MISEV standards
✔
EM
Biophysical techniques
✔
TSG101|HSP90|HSC70|MHCI
Enriched markers
✘ Negative markers
✘ Particle analysis
Identified molecule protein
Identification method Mass spectrometry [Orbitrap]
PubMed ID 21828046    
Organism Rattus norvegicus
Experiment description The proteo-lipidic composition of exosomes changes during reticulocyte maturation.
Authors "Carayon K, Chaoui K, Ronzier E, Lazar I, Bertrand-Michel J, Roques V, Balor S, Terce F, Lopez A, Salome L, Joly E."
Journal name JBC
Publication year 2011
Sample Reticulocytes
Sample name Reticulocytes - D2 Rep 2
Isolation/purification methods Differential centrifugation
Ultracentrifugation
Sucrose density gradient
Flotation density 1.16-1.21 g/mL
Molecules identified in the study Protein
Lipids
Methods used in the study Mass spectrometry [QSTAR]
Mass spectrometry [Orbitrap]
Western blotting
6
Experiment ID 97
MISEV standards
✔
EM
Biophysical techniques
✔
TSG101|HSP90|HSC70|MHCI
Enriched markers
✘ Negative markers
✘ Particle analysis
Identified molecule protein
Identification method Mass spectrometry [Orbitrap]
PubMed ID 21828046    
Organism Rattus norvegicus
Experiment description The proteo-lipidic composition of exosomes changes during reticulocyte maturation.
Authors "Carayon K, Chaoui K, Ronzier E, Lazar I, Bertrand-Michel J, Roques V, Balor S, Terce F, Lopez A, Salome L, Joly E."
Journal name JBC
Publication year 2011
Sample Reticulocytes
Sample name Reticulocytes - D4 Rep 2
Isolation/purification methods Differential centrifugation
Ultracentrifugation
Sucrose density gradient
Flotation density 1.16-1.21 g/mL
Molecules identified in the study Protein
Lipids
Methods used in the study Mass spectrometry [QSTAR]
Mass spectrometry [Orbitrap]
Western blotting
7
Experiment ID 98
MISEV standards
✔
EM
Biophysical techniques
✔
TSG101|HSP90|HSC70|MHCI
Enriched markers
✘ Negative markers
✘ Particle analysis
Identified molecule protein
Identification method Mass spectrometry [Orbitrap]
PubMed ID 21828046    
Organism Rattus norvegicus
Experiment description The proteo-lipidic composition of exosomes changes during reticulocyte maturation.
Authors "Carayon K, Chaoui K, Ronzier E, Lazar I, Bertrand-Michel J, Roques V, Balor S, Terce F, Lopez A, Salome L, Joly E."
Journal name JBC
Publication year 2011
Sample Reticulocytes
Sample name Reticulocytes - D7 Rep 2
Isolation/purification methods Differential centrifugation
Ultracentrifugation
Sucrose density gradient
Flotation density 1.13-1.25 g/mL
Molecules identified in the study Protein
Lipids
Methods used in the study Mass spectrometry [QSTAR]
Mass spectrometry [Orbitrap]
Western blotting
8
Experiment ID 99
MISEV standards
✔
EM
Biophysical techniques
✔
TSG101|HSP90|HSC70|MHCI
Enriched markers
✘ Negative markers
✘ Particle analysis
Identified molecule protein
Identification method Mass spectrometry [QSTAR]
PubMed ID 21828046    
Organism Rattus norvegicus
Experiment description The proteo-lipidic composition of exosomes changes during reticulocyte maturation.
Authors "Carayon K, Chaoui K, Ronzier E, Lazar I, Bertrand-Michel J, Roques V, Balor S, Terce F, Lopez A, Salome L, Joly E."
Journal name JBC
Publication year 2011
Sample Reticulocytes
Sample name Reticulocytes - D2 Rep 3
Isolation/purification methods Differential centrifugation
Ultracentrifugation
Sucrose density gradient
Flotation density 1.16-1.21 g/mL
Molecules identified in the study Protein
Lipids
Methods used in the study Mass spectrometry [QSTAR]
Mass spectrometry [Orbitrap]
Western blotting
9
Experiment ID 192
MISEV standards
✔
CEM
Biophysical techniques
✔
TSG101|HSP70|CD63|CD81|FLOT
Enriched markers
✘ Negative markers
✘ Particle analysis
Identified molecule protein
Identification method Mass spectrometry
PubMed ID 20535238    
Organism Rattus norvegicus
Experiment description Candidate biomarkers in exosome-like vesicles purified from rat and mouse urine samples.
Authors "Conde-Vancells J, Rodriguez-Suarez E, Gonzalez E, Berisa A, Gil D, Embade N, Valle M, Luka Z, Elortza F, Wagner C, Lu SC, Mato JM, Falcon-Perez M."
Journal name Proteomics Clin Appl
Publication year 2010
Sample Urine
Sample name Urine - Rats of liver injury
Isolation/purification methods Differential centrifugation
Filtration
UltracentrifugationSucrose cushion
Sucrose density gradient
Flotation density -
Molecules identified in the study Protein
Methods used in the study Mass spectrometry
 Protein-protein interactions for Cfl1
  Protein Interactor ExoCarta ID Identification method PubMed Species
1 Atp1a1 24211
Two-hybrid Rattus norvegicus
Reconstituted Complex Rattus norvegicus
Far Western Rattus norvegicus
2 Gja1  
Affinity Capture-MS Rattus norvegicus
3 Park7 117287
Affinity Capture-MS Rattus norvegicus
4 Itm2b 290364
Affinity Capture-MS Rattus norvegicus
View the network image/svg+xml
 Pathways in which Cfl1 is involved
No pathways found





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