Details for: CL0002673

Cell ID: CL0002673

Cell Name: tongue muscle cell

Marker Score Threshold: 399
(Derived using integrated single-cell and genomic data)

Description: A skeletal muscle cell that is part of the tongue.

Genes (max top 100)

(Marker Score score is uniquely calculated using our advanced thresholding algorithms to reveal cell-specific gene markers)

  • Gene Symbol: ACTB (ENSG00000075624)
    Fold Change: 2.81
    Ensembl ID: ENSG00000075624
  • Gene Symbol: B2M (ENSG00000166710)
    Fold Change: 2.67
    Ensembl ID: ENSG00000166710
  • Gene Symbol: DDX5 (ENSG00000108654)
    Fold Change: 2.36
    Ensembl ID: ENSG00000108654
  • Gene Symbol: ACTG1 (ENSG00000184009)
    Fold Change: 2.31
    Ensembl ID: ENSG00000184009
  • Gene Symbol: COX4I1 (ENSG00000131143)
    Fold Change: 2.29
    Ensembl ID: ENSG00000131143
  • Gene Symbol: CFL1 (ENSG00000172757)
    Fold Change: 2.27
    Ensembl ID: ENSG00000172757
  • Gene Symbol: COX7C (ENSG00000127184)
    Fold Change: 2.23
    Ensembl ID: ENSG00000127184
  • Gene Symbol: CIRBP (ENSG00000099622)
    Fold Change: 2.17
    Ensembl ID: ENSG00000099622
  • Gene Symbol: CALM1 (ENSG00000198668)
    Fold Change: 2.12
    Ensembl ID: ENSG00000198668
  • Gene Symbol: BTF3 (ENSG00000145741)
    Fold Change: 2.08
    Ensembl ID: ENSG00000145741
  • Gene Symbol: ATP5MC2 (ENSG00000135390)
    Fold Change: 2
    Ensembl ID: ENSG00000135390
  • Gene Symbol: COX6C (ENSG00000164919)
    Fold Change: 1.97
    Ensembl ID: ENSG00000164919
  • Gene Symbol: ATP5F1E (ENSG00000124172)
    Fold Change: 1.95
    Ensembl ID: ENSG00000124172
  • Gene Symbol: BTG1 (ENSG00000133639)
    Fold Change: 1.92
    Ensembl ID: ENSG00000133639
  • Gene Symbol: CDC42 (ENSG00000070831)
    Fold Change: 1.85
    Ensembl ID: ENSG00000070831
  • Gene Symbol: RHOA (ENSG00000067560)
    Fold Change: 1.83
    Ensembl ID: ENSG00000067560
  • Gene Symbol: COX6B1 (ENSG00000126267)
    Fold Change: 1.82
    Ensembl ID: ENSG00000126267
  • Gene Symbol: COX7A2 (ENSG00000112695)
    Fold Change: 1.82
    Ensembl ID: ENSG00000112695
  • Gene Symbol: COX5B (ENSG00000135940)
    Fold Change: 1.77
    Ensembl ID: ENSG00000135940
  • Gene Symbol: CALM2 (ENSG00000143933)
    Fold Change: 1.76
    Ensembl ID: ENSG00000143933
  • Gene Symbol: CAPZB (ENSG00000077549)
    Fold Change: 1.72
    Ensembl ID: ENSG00000077549
  • Gene Symbol: CD63 (ENSG00000135404)
    Fold Change: 1.72
    Ensembl ID: ENSG00000135404
  • Gene Symbol: CALR (ENSG00000179218)
    Fold Change: 1.71
    Ensembl ID: ENSG00000179218
  • Gene Symbol: COX6A1 (ENSG00000111775)
    Fold Change: 1.7
    Ensembl ID: ENSG00000111775
  • Gene Symbol: KLF6 (ENSG00000067082)
    Fold Change: 1.68
    Ensembl ID: ENSG00000067082
  • Gene Symbol: ARF1 (ENSG00000143761)
    Fold Change: 1.63
    Ensembl ID: ENSG00000143761
  • Gene Symbol: COX8A (ENSG00000176340)
    Fold Change: 1.62
    Ensembl ID: ENSG00000176340
  • Gene Symbol: SEPTIN7 (ENSG00000122545)
    Fold Change: 1.61
    Ensembl ID: ENSG00000122545
  • Gene Symbol: ATP5ME (ENSG00000169020)
    Fold Change: 1.61
    Ensembl ID: ENSG00000169020
  • Gene Symbol: CYBA (ENSG00000051523)
    Fold Change: 1.56
    Ensembl ID: ENSG00000051523
  • Gene Symbol: ATP5PF (ENSG00000154723)
    Fold Change: 1.55
    Ensembl ID: ENSG00000154723
  • Gene Symbol: ZFP36L2 (ENSG00000152518)
    Fold Change: 1.54
    Ensembl ID: ENSG00000152518
  • Gene Symbol: ATP5F1B (ENSG00000110955)
    Fold Change: 1.52
    Ensembl ID: ENSG00000110955
  • Gene Symbol: ATP5MC3 (ENSG00000154518)
    Fold Change: 1.51
    Ensembl ID: ENSG00000154518
  • Gene Symbol: SLC25A5 (ENSG00000005022)
    Fold Change: 1.5
    Ensembl ID: ENSG00000005022
  • Gene Symbol: CLIC1 (ENSG00000213719)
    Fold Change: 1.49
    Ensembl ID: ENSG00000213719
  • Gene Symbol: BSG (ENSG00000172270)
    Fold Change: 1.48
    Ensembl ID: ENSG00000172270
  • Gene Symbol: ZFP36L1 (ENSG00000185650)
    Fold Change: 1.48
    Ensembl ID: ENSG00000185650
  • Gene Symbol: TMEM258 (ENSG00000134825)
    Fold Change: 1.47
    Ensembl ID: ENSG00000134825
  • Gene Symbol: ATP5F1D (ENSG00000099624)
    Fold Change: 1.45
    Ensembl ID: ENSG00000099624
  • Gene Symbol: COX7B (ENSG00000131174)
    Fold Change: 1.43
    Ensembl ID: ENSG00000131174
  • Gene Symbol: DAD1 (ENSG00000129562)
    Fold Change: 1.4
    Ensembl ID: ENSG00000129562
  • Gene Symbol: DBI (ENSG00000155368)
    Fold Change: 1.4
    Ensembl ID: ENSG00000155368
  • Gene Symbol: DDX3X (ENSG00000215301)
    Fold Change: 1.39
    Ensembl ID: ENSG00000215301
  • Gene Symbol: CANX (ENSG00000127022)
    Fold Change: 1.39
    Ensembl ID: ENSG00000127022
  • Gene Symbol: CSNK1A1 (ENSG00000113712)
    Fold Change: 1.38
    Ensembl ID: ENSG00000113712
  • Gene Symbol: ATP5F1A (ENSG00000152234)
    Fold Change: 1.38
    Ensembl ID: ENSG00000152234
  • Gene Symbol: ATRX (ENSG00000085224)
    Fold Change: 1.36
    Ensembl ID: ENSG00000085224
  • Gene Symbol: ATF4 (ENSG00000128272)
    Fold Change: 1.32
    Ensembl ID: ENSG00000128272
  • Gene Symbol: ATP6V0B (ENSG00000117410)
    Fold Change: 1.32
    Ensembl ID: ENSG00000117410
  • Gene Symbol: CAST (ENSG00000153113)
    Fold Change: 1.32
    Ensembl ID: ENSG00000153113
  • Gene Symbol: ATP5F1C (ENSG00000165629)
    Fold Change: 1.32
    Ensembl ID: ENSG00000165629
  • Gene Symbol: CLTA (ENSG00000122705)
    Fold Change: 1.31
    Ensembl ID: ENSG00000122705
  • Gene Symbol: TSC22D3 (ENSG00000157514)
    Fold Change: 1.29
    Ensembl ID: ENSG00000157514
  • Gene Symbol: APRT (ENSG00000198931)
    Fold Change: 1.28
    Ensembl ID: ENSG00000198931
  • Gene Symbol: CAPZA1 (ENSG00000116489)
    Fold Change: 1.28
    Ensembl ID: ENSG00000116489
  • Gene Symbol: CLK1 (ENSG00000013441)
    Fold Change: 1.26
    Ensembl ID: ENSG00000013441
  • Gene Symbol: AP2M1 (ENSG00000161203)
    Fold Change: 1.25
    Ensembl ID: ENSG00000161203
  • Gene Symbol: CALM3 (ENSG00000160014)
    Fold Change: 1.25
    Ensembl ID: ENSG00000160014
  • Gene Symbol: CD47 (ENSG00000196776)
    Fold Change: 1.24
    Ensembl ID: ENSG00000196776
  • Gene Symbol: CAPZA2 (ENSG00000198898)
    Fold Change: 1.23
    Ensembl ID: ENSG00000198898
  • Gene Symbol: ARHGDIA (ENSG00000141522)
    Fold Change: 1.21
    Ensembl ID: ENSG00000141522
  • Gene Symbol: ARF4 (ENSG00000168374)
    Fold Change: 1.21
    Ensembl ID: ENSG00000168374
  • Gene Symbol: ACTN4 (ENSG00000130402)
    Fold Change: 1.2
    Ensembl ID: ENSG00000130402
  • Gene Symbol: ATP1A1 (ENSG00000163399)
    Fold Change: 1.2
    Ensembl ID: ENSG00000163399
  • Gene Symbol: TLE5 (ENSG00000104964)
    Fold Change: 1.19
    Ensembl ID: ENSG00000104964
  • Gene Symbol: ATP5PB (ENSG00000116459)
    Fold Change: 1.19
    Ensembl ID: ENSG00000116459
  • Gene Symbol: ATP5PO (ENSG00000241837)
    Fold Change: 1.19
    Ensembl ID: ENSG00000241837
  • Gene Symbol: ANXA5 (ENSG00000164111)
    Fold Change: 1.18
    Ensembl ID: ENSG00000164111
  • Gene Symbol: ALDOA (ENSG00000149925)
    Fold Change: 1.17
    Ensembl ID: ENSG00000149925
  • Gene Symbol: CTSD (ENSG00000117984)
    Fold Change: 1.16
    Ensembl ID: ENSG00000117984
  • Gene Symbol: CHD2 (ENSG00000173575)
    Fold Change: 1.15
    Ensembl ID: ENSG00000173575
  • Gene Symbol: CST3 (ENSG00000101439)
    Fold Change: 1.14
    Ensembl ID: ENSG00000101439
  • Gene Symbol: CTNNB1 (ENSG00000168036)
    Fold Change: 1.14
    Ensembl ID: ENSG00000168036
  • Gene Symbol: ANXA2 (ENSG00000182718)
    Fold Change: 1.12
    Ensembl ID: ENSG00000182718
  • Gene Symbol: ATP1B3 (ENSG00000069849)
    Fold Change: 1.12
    Ensembl ID: ENSG00000069849
  • Gene Symbol: ANXA11 (ENSG00000122359)
    Fold Change: 1.12
    Ensembl ID: ENSG00000122359
  • Gene Symbol: AP2S1 (ENSG00000042753)
    Fold Change: 1.11
    Ensembl ID: ENSG00000042753
  • Gene Symbol: BNIP3L (ENSG00000104765)
    Fold Change: 1.1
    Ensembl ID: ENSG00000104765
  • Gene Symbol: ASAH1 (ENSG00000104763)
    Fold Change: 1.09
    Ensembl ID: ENSG00000104763
  • Gene Symbol: APLP2 (ENSG00000084234)
    Fold Change: 1.08
    Ensembl ID: ENSG00000084234
  • Gene Symbol: ACADVL (ENSG00000072778)
    Fold Change: 1.07
    Ensembl ID: ENSG00000072778
  • Gene Symbol: AMD1 (ENSG00000123505)
    Fold Change: 1.07
    Ensembl ID: ENSG00000123505
  • Gene Symbol: DYNC1H1 (ENSG00000197102)
    Fold Change: 1.07
    Ensembl ID: ENSG00000197102
  • Gene Symbol: C1QBP (ENSG00000108561)
    Fold Change: 1.05
    Ensembl ID: ENSG00000108561
  • Gene Symbol: DDX6 (ENSG00000110367)
    Fold Change: 1.05
    Ensembl ID: ENSG00000110367
  • Gene Symbol: ATP5MC1 (ENSG00000159199)
    Fold Change: 1.05
    Ensembl ID: ENSG00000159199
  • Gene Symbol: FOXN3 (ENSG00000053254)
    Fold Change: 1.04
    Ensembl ID: ENSG00000053254
  • Gene Symbol: ARF6 (ENSG00000165527)
    Fold Change: 1.04
    Ensembl ID: ENSG00000165527
  • Gene Symbol: CD44 (ENSG00000026508)
    Fold Change: 1.04
    Ensembl ID: ENSG00000026508
  • Gene Symbol: CTSB (ENSG00000164733)
    Fold Change: 1.03
    Ensembl ID: ENSG00000164733
  • Gene Symbol: AP3S1 (ENSG00000177879)
    Fold Change: 1.03
    Ensembl ID: ENSG00000177879
  • Gene Symbol: CHD1 (ENSG00000153922)
    Fold Change: 1.03
    Ensembl ID: ENSG00000153922
  • Gene Symbol: TSPO (ENSG00000100300)
    Fold Change: 1.03
    Ensembl ID: ENSG00000100300
  • Gene Symbol: CCT6A (ENSG00000146731)
    Fold Change: 1.02
    Ensembl ID: ENSG00000146731
  • Gene Symbol: ADAR (ENSG00000160710)
    Fold Change: 1.01
    Ensembl ID: ENSG00000160710
  • Gene Symbol: ACP1 (ENSG00000143727)
    Fold Change: 1.01
    Ensembl ID: ENSG00000143727
  • Gene Symbol: ATP2B1 (ENSG00000070961)
    Fold Change: 1
    Ensembl ID: ENSG00000070961
  • Gene Symbol: ANXA7 (ENSG00000138279)
    Fold Change: N/A
    Ensembl ID: ENSG00000138279
  • Gene Symbol: CD81 (ENSG00000110651)
    Fold Change: N/A
    Ensembl ID: ENSG00000110651
Hovered Details

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Hovered Details

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**Key Characteristics** * **Cell Type**: Tongue muscle cell (skeletal muscle cell) * **Gene Symbol**: ACTB * **Ensembl ID**: ENSG00000075624 * **Pathways/Ontology**: + Actin cytoskeleton + Actin filament + Adherens junction + Adherens junction assembly + Adherens junctions interactions + Apical junction complex + Apical protein localization + Atp binding + Axon + Axon guidance + Axonogenesis + B-wich complex positively regulates rrna expression + Bbaf complex + Blood microparticle + Brahma complex + Brush border + Calyx of held + Cell-cell communication + Cell-cell junction + Cell-cell junction organization + Cell-extracellular matrix interactions + Cell junction organization + Cell motility + Cellular response to cytochalasin b + Chaperonin-mediated protein folding + Chromatin + Chromatin modifying enzymes + Chromatin organization + Chromatin remodeling + Clathrin-mediated endocytosis + Cooperation of prefoldin and tric/cct in actin and tubulin folding + Cortical cytoskeleton + Cytoplasm + Cytoplasmic ribonucleoprotein granule + Cytoskeleton + Cytosol + Dense body + Deubiquitination + Developmental biology + Disease + Diseases of signal transduction by growth factor receptors and second messengers + Dna damage recognition in gg-ner + Dna repair + Eph-ephrin mediated repulsion of cells + Eph-ephrin signaling + Ephb-mediated forward signaling + Epigenetic regulation of gene expression + Establishment or maintenance of cell polarity + Extracellular exosome + Extracellular space + Factors involved in megakaryocyte development and platelet production + Fcgamma receptor (fcgr) dependent phagocytosis + Fcgr3a-mediated phagocytosis + Focal adhesion + Folding of actin by cct/tric + Formation of annular gap junctions + Gap junction degradation + Gap junction trafficking + Gap junction trafficking and regulation + Gbaf complex + Gene expression (transcription) + Global genome nucleotide excision repair (gg-ner) + Glutamatergic synapse + Hats acetylate histones + Hemostasis + Hydrolase activity + Identical protein binding + Immune system + Infectious disease + Innate immune system + Interaction between l1 and ankyrins + Kinesin binding + Kinetochore + L1cam interactions + Lamellipodium + Leishmania infection + Leishmania phagocytosis + Maintenance of blood-brain barrier + Map2k and mapk activation + Mapk1/mapk3 signaling + Mapk family signaling cascades + Membrane + Membrane trafficking + Metabolism of proteins + Morphogenesis of a polarized epithelium + Nbaf complex + Negative regulation of cell differentiation + Negative regulation of protein binding + Nervous system development + Nitric-oxide synthase binding + Npbaf complex + Nua4 histone acetyltransferase complex + Nuclear matrix + Nucleoplasm + Nucleosomal dna binding + Nucleosome + Nucleotide excision repair + Nucleus + Oncogenic mapk signaling + Paradoxical activation of raf signaling by kinase inactive braf + Parasite infection + Parasitic infection pathways + Plasma membrane + Platelet aggregation + Positive epigenetic regulation of rrna expression + Positive regulation of cell differentiation + Positive regulation of cell population proliferation + Positive regulation of dna-templated transcription + Positive regulation of double-strand break repair + Positive regulation of double-strand break repair via homologous recombination + Positive regulation of myoblast differentiation + Positive regulation of norepinephrine uptake + Positive regulation of stem cell population maintenance + Positive regulation of t cell differentiation + Post-translational protein modification + Postsynaptic actin cytoskeleton + Postsynaptic actin cytoskeleton organization + Prefoldin mediated transfer of substrate to cct/tric + Presynapse + Protein-containing complex + Protein binding + Protein folding + Protein kinase binding + Protein localization to adherens junction + Raf/map kinase cascade + Recycling pathway of l1 + Regulation of actin dynamics for phagocytic cup formation + Regulation of apoptotic process + Regulation of cell cycle + Regulation of cyclin-dependent protein serine/threonine kinase activity + Regulation of double-strand break repair + Regulation of g0 to g1 transition + Regulation of g1/s transition of mitotic cell cycle + Regulation of mitotic metaphase/anaphase transition + Regulation of norepinephrine uptake + Regulation of nucleotide-excision repair + Regulation of protein localization to plasma membrane + Regulation of synaptic vesicle endocytosis + Regulation of transcription by rna polymerase ii + Regulation of transepithelial transport + Regulation of transmembrane transporter activity + Rhof gtpase cycle + Rho gtpase cycle + Rho gtpase effectors + Rho gtpases activate formins + Rho gtpases activate iqgaps + Rho gtpases activate wasps and waves + Ribonucleoprotein complex + Rsc-type complex + Schaffer collateral - ca1 synapse + Sensory perception + Sensory processing of sound + Sensory processing of sound by inner hair cells of the cochlea + Sensory processing of sound by outer hair cells of the cochlea + Signaling by braf and raf1 fusions + Signaling by high-kinase activity braf mutants + Signaling by moderate kinase activity braf mutants + Signaling by raf1 mutants + Signaling by ras mutants + Signaling by receptor tyrosine kinases + Signaling by rho gtpases + Signaling by rho gtpases, miro gtpases and rhobtb3 + Signaling by vegf + Signaling downstream of ras mutants + Signal transduction + Structural constituent of cytoskeleton + Structural constituent of postsynaptic actin cytoskeleton + Substantia nigra development + Swi/snf complex + Synapse + Tat protein binding + Tau protein binding + Tight junction + Translocation of slc2a4 (glut4) to the plasma membrane + Uch proteinases + Vegfa-vegfr2 pathway + Vesicle + Vesicle-mediated transport **Clinical Significance** The tongue muscle cell is involved in various clinical processes, including: * **Muscle contraction and movement**: The cell's ability to contract and move is crucial for various functions, such as speaking, eating, and swallowing. * **Sensation**: The cell's sensory receptors detect changes in the tongue's shape and texture, which helps with taste and smell. * **Disease**: Abnormalities in the cell's function can lead to diseases such as muscular dystrophy, Parkinson's disease, and amyotrophic lateral sclerosis (ALS). * **Infection**: The cell's ability to phagocytose pathogens is crucial for preventing infections. * **Cancer**: The cell's ability to differentiate and proliferate can contribute to cancer development. Understanding the cell's function and behavior is essential for developing treatments and therapies for various diseases and conditions.