- 関
- type 4 fibroblast growth factor receptor
Wikipedia preview
出典(authority):フリー百科事典『ウィキペディア(Wikipedia)』「2013/02/12 13:36:52」(JST)
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Fibroblast growth factor receptor 4 |
Available structures |
PDB |
Ortholog search: PDBe, RCSB |
List of PDB id codes |
1QCT
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Identifiers |
Symbols |
FGFR4; CD334; JTK2; TKF |
External IDs |
OMIM: 134935 MGI: 95525 HomoloGene: 20461 ChEMBL: 3973 GeneCards: FGFR4 Gene |
EC number |
2.7.10.1 |
Gene Ontology |
Molecular function |
• protein tyrosine kinase activity
• fibroblast growth factor-activated receptor activity
• ATP binding
• heparin binding
• fibroblast growth factor binding
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Cellular component |
• extracellular region
• nucleus
• nucleolus
• cytoplasm
• endosome
• endoplasmic reticulum
• plasma membrane
• integral to plasma membrane
• cell-cell junction
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Biological process |
• organ induction
• positive regulation of cell proliferation
• insulin receptor signaling pathway
• fibroblast growth factor receptor signaling pathway
• regulation of extracellular matrix disassembly
• cell migration
• peptidyl-tyrosine phosphorylation
• regulation of lipid metabolic process
• glucose homeostasis
• positive regulation of proteolysis
• protein autophosphorylation
• positive regulation of metalloenzyme activity
• phosphate ion homeostasis
• alveolar secondary septum development
• positive regulation of ERK1 and ERK2 cascade
• regulation of bile acid biosynthetic process
• regulation of cholesterol homeostasis
• positive regulation of DNA biosynthetic process
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Sources: Amigo / QuickGO |
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RNA expression pattern |
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More reference expression data |
Orthologs |
Species |
Human |
Mouse |
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Entrez |
2264 |
14186 |
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Ensembl |
ENSG00000160867 |
ENSMUSG00000005320 |
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UniProt |
P22455 |
Q03142 |
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RefSeq (mRNA) |
NM_002011.3 |
NM_008011.2 |
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RefSeq (protein) |
NP_002002.3 |
NP_032037.2 |
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Location (UCSC) |
Chr 5:
176.51 – 176.53 Mb |
Chr 13:
55.15 – 55.17 Mb |
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PubMed search |
[1] |
[2] |
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Fibroblast growth factor receptor 4 is a protein that in humans is encoded by the FGFR4 gene. FGFR4 has also been designated as CD334 (cluster of differentiation 334).
The protein encoded by this gene is a member of the fibroblast growth factor receptor family, where amino acid sequence is highly conserved between members and throughout evolution. FGFR family members differ from one another in their ligand affinities and tissue distribution. A full-length representative protein would consist of an extracellular region, composed of three immunoglobulin-like domains, a single hydrophobic membrane-spanning segment and a cytoplasmic tyrosine kinase domain. The extracellular portion of the protein interacts with fibroblast growth factors, setting in motion a cascade of downstream signals, ultimately influencing mitogenesis and differentiation. The genomic organization of this gene, compared to members 1-3, encompasses 18 exons rather than 19 or 20. Although alternative splicing has been observed, there is no evidence that the C-terminal half of the IgIII domain of this protein varies between three alternate forms, as indicated for members 1-3. This particular family member preferentially binds acidic fibroblast growth factor and, although its specific function is unknown, it is overexpressed in gynecological tumor samples, suggesting a role in breast and ovarian tumorigenesis.[1]
Contents
- 1 Interactions
- 2 References
- 3 Further reading
- 4 External links
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Interactions
Fibroblast growth factor receptor 4 has been shown to interact with FGF1.[2][3]
References
- ^ "Entrez Gene: FGFR4 fibroblast growth factor receptor 4". http://www.ncbi.nlm.nih.gov/sites/entrez?Db=gene&Cmd=ShowDetailView&TermToSearch=2264.
- ^ Loo, B B; Darwish K K, Vainikka S S, Saarikettu J J, Vihko P P, Hermonen J J, Goldman A A, Alitalo K K, Jalkanen M M (May. 2000). "Production and characterization of the extracellular domain of recombinant human fibroblast growth factor receptor 4". Int. J. Biochem. Cell Biol. (ENGLAND) 32 (5): 489–97. doi:10.1016/S1357-2725(99)00145-4. ISSN 1357-2725. PMID 10736564.
- ^ Kan, M; Wu X, Wang F, McKeehan W L (May. 1999). "Specificity for fibroblast growth factors determined by heparan sulfate in a binary complex with the receptor kinase". J. Biol. Chem. (UNITED STATES) 274 (22): 15947–52. doi:10.1074/jbc.274.22.15947. ISSN 0021-9258. PMID 10336501.
Further reading
- Doherty P, Smith P, Walsh FS (1997). "Shared cell adhesion molecule (CAM) homology domains point to CAMs signalling via FGF receptors.". Perspectives on developmental neurobiology 4 (2–3): 157–68. PMID 9168198.
- Warrington JA, Bailey SK, Armstrong E, et al. (1992). "A radiation hybrid map of 18 growth factor, growth factor receptor, hormone receptor, or neurotransmitter receptor genes on the distal region of the long arm of chromosome 5". Genomics 13 (3): 803–8. doi:10.1016/0888-7543(92)90156-M. PMID 1322355.
- Armstrong E, Partanen J, Cannizzaro L, et al. (1992). "Localization of the fibroblast growth factor receptor-4 gene to chromosome region 5q33-qter". Genes Chromosomes Cancer 4 (1): 94–8. doi:10.1002/gcc.2870040116. PMID 1377018.
- Vainikka S, Partanen J, Bellosta P, et al. (1992). "Fibroblast growth factor receptor-4 shows novel features in genomic structure, ligand binding and signal transduction". EMBO J. 11 (12): 4273–80. PMC 557000. PMID 1385111. //www.ncbi.nlm.nih.gov/pmc/articles/PMC557000/.
- Partanen J, Mäkelä TP, Eerola E, et al. (1991). "FGFR-4, a novel acidic fibroblast growth factor receptor with a distinct expression pattern". EMBO J. 10 (6): 1347–54. PMC 452793. PMID 1709094. //www.ncbi.nlm.nih.gov/pmc/articles/PMC452793/.
- Holtrich U, Bräuninger A, Strebhardt K, Rübsamen-Waigmann H (1992). "Two additional protein-tyrosine kinases expressed in human lung: fourth member of the fibroblast growth factor receptor family and an intracellular protein-tyrosine kinase". Proc. Natl. Acad. Sci. U.S.A. 88 (23): 10411–5. doi:10.1073/pnas.88.23.10411. PMC 52938. PMID 1720539. //www.ncbi.nlm.nih.gov/pmc/articles/PMC52938/.
- Partanen J, Mäkelä TP, Alitalo R, et al. (1991). "Putative tyrosine kinases expressed in K-562 human leukemia cells". Proc. Natl. Acad. Sci. U.S.A. 87 (22): 8913–7. doi:10.1073/pnas.87.22.8913. PMC 55070. PMID 2247464. //www.ncbi.nlm.nih.gov/pmc/articles/PMC55070/.
- Vainikka S, Joukov V, Wennström S, et al. (1994). "Signal transduction by fibroblast growth factor receptor-4 (FGFR-4). Comparison with FGFR-1". J. Biol. Chem. 269 (28): 18320–6. PMID 7518429.
- Wen Z, Zhong Z, Darnell JE (1995). "Maximal activation of transcription by Stat1 and Stat3 requires both tyrosine and serine phosphorylation". Cell 82 (2): 241–50. doi:10.1016/0092-8674(95)90311-9. PMID 7543024.
- Quelle FW, Thierfelder W, Witthuhn BA, et al. (1995). "Phosphorylation and activation of the DNA binding activity of purified Stat1 by the Janus protein-tyrosine kinases and the epidermal growth factor receptor". J. Biol. Chem. 270 (35): 20775–80. doi:10.1074/jbc.270.35.20775. PMID 7657660.
- Ron D, Reich R, Chedid M, et al. (1993). "Fibroblast growth factor receptor 4 is a high affinity receptor for both acidic and basic fibroblast growth factor but not for keratinocyte growth factor". J. Biol. Chem. 268 (8): 5388–94. PMID 7680645.
- Shuai K, Stark GR, Kerr IM, Darnell JE (1993). "A single phosphotyrosine residue of Stat91 required for gene activation by interferon-gamma". Science 261 (5129): 1744–6. doi:10.1126/science.7690989. PMID 7690989.
- Jaakkola S, Salmikangas P, Nylund S, et al. (1993). "Amplification of fgfr4 gene in human breast and gynecological cancers". Int. J. Cancer 54 (3): 378–82. doi:10.1002/ijc.2910540305. PMID 8099571.
- Maruyama K, Sugano S (1994). "Oligo-capping: a simple method to replace the cap structure of eukaryotic mRNAs with oligoribonucleotides". Gene 138 (1–2): 171–4. doi:10.1016/0378-1119(94)90802-8. PMID 8125298.
- Reich-Slotky R, Shaoul E, Berman B, et al. (1996). "Chimeric molecules between keratinocyte growth factor and basic fibroblast growth factor define domains that confer receptor binding specificities". J. Biol. Chem. 270 (50): 29813–8. doi:10.1074/jbc.270.50.29813. PMID 8530375.
- Vainikka S, Joukov V, Klint P, Alitalo K (1996). "Association of a 85-kDa serine kinase with activated fibroblast growth factor receptor-4". J. Biol. Chem. 271 (3): 1270–3. doi:10.1074/jbc.271.3.1270. PMID 8576110.
- Kaptein A, Paillard V, Saunders M (1996). "Dominant negative stat3 mutant inhibits interleukin-6-induced Jak-STAT signal transduction". J. Biol. Chem. 271 (11): 5961–4. doi:10.1074/jbc.271.11.5961. PMID 8626374.
- Ornitz DM, Xu J, Colvin JS, et al. (1996). "Receptor specificity of the fibroblast growth factor family". J. Biol. Chem. 271 (25): 15292–7. doi:10.1074/jbc.271.25.15292. PMID 8663044.
- Agnès F, Toux MM, André C, Galibert F (1997). "Genomic organization of the extracellular coding region of the human FGFR4 and FLT4 genes: evolution of the genes encoding receptor tyrosine kinases with immunoglobulin-like domains". J. Mol. Evol. 45 (1): 43–9. doi:10.1007/PL00006199. PMID 9211733.
External links
- FGFR4+protein,+human at the US National Library of Medicine Medical Subject Headings (MeSH)
This article incorporates text from the United States National Library of Medicine, which is in the public domain.
Protein kinases: tyrosine kinases (EC 2.7.10)
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Receptor tyrosine kinases (EC 2.7.10.1)
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Growth factor receptors |
EGF receptor family |
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Insulin receptor family |
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PDGF receptor family |
- CSF1R
- FLT3
- KIT
- PDGFR (PDGFRA
- PDGFRB)
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FGF receptor family |
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VEGF receptors family |
- VEGFR1
- VEGFR2
- VEGFR3
- VEGFR4
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HGF receptor family |
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Trk receptor family |
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EPH receptor family |
- EPHA1
- EPHA2
- EPHA3
- EPHA4
- EPHA5
- EPHA6
- EPHA7
- EPHA8
- EPHB1
- EPHB2
- EPHB3
- EPHB4
- EPHB5
- EPHB6
- EPHX
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LTK receptor family |
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TIE receptor family |
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ROR receptor family |
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DDR receptor family |
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PTK7 receptor family |
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RYK receptor family |
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MuSK receptor family |
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ROS receptor family |
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AATYK receptor family |
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AXL receptor family |
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RET receptor family |
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uncatagorised |
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Non-receptor tyrosine kinases (EC 2.7.10.2)
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ABL family |
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ACK family |
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CSK family |
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FAK family |
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FES family |
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FRK family |
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JAK family |
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SRC-A family |
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SRC-B family |
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TEC family |
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SYK family |
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- B
- enzm
- 1.1
- 2
- 3
- 4
- 5
- 6
- 7
- 8
- 10
- 11
- 13
- 14
- 15-18
- 2.1
- 2.7.10
- 2.7.11-12
- 3.1
- 4.1
- 5.1
- 6.1-3
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UpToDate Contents
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English Journal
- A kinome-targeted RNAi-based screen links FGF signaling to H2AX phosphorylation in response to radiation.
- Benzina S1, Pitaval A, Lemercier C, Lustremant C, Frouin V, Wu N, Papine A, Soussaline F, Romeo PH, Gidrol X.
- Cellular and molecular life sciences : CMLS.Cell Mol Life Sci.2015 Sep;72(18):3559-73. doi: 10.1007/s00018-015-1901-7. Epub 2015 Apr 18.
- A general radioprotective effect by fibroblast growth factor (FGF) has been extensively described since the early 1990s; however, the molecular mechanisms involved remain largely unknown. Radiation-induced DNA double-strand breaks (DSBs) lead to a complex set of responses in eukaryotic cells. One of
- PMID 25894690
- FGF23 regulation of renal tubular solute transport.
- Erben RG1, Andrukhova O.
- Current opinion in nephrology and hypertension.Curr Opin Nephrol Hypertens.2015 Sep;24(5):450-6. doi: 10.1097/MNH.0000000000000145.
- PURPOSE OF REVIEW: Fibroblast growth factor-23 (FGF23) is a bone-derived hormone known to suppress phosphate reabsorption in the kidney. The purpose of this review was to highlight the recent advances in the area of FGF23-regulated solute transport in the kidney.RECENT FINDINGS: Recent evidence sugg
- PMID 26125643
- Exploratory analysis of candidate germline gene polymorphisms in breast cancer patients treated with neoadjuvant anthracycline-containing chemotherapy and associations with febrile neutropenia.
- Charehbili A1,2, Groot S1, der Straaten TV3, Swen JJ3, Pijl H4, Gelderblom H1, de Velde CV2, Nortier J1, Guchelaar HJ3, Kroep JR1.
- Pharmacogenomics.Pharmacogenomics.2015 Aug 20:1-10. [Epub ahead of print]
- AIM: SNPs may be associated with (side) effects of chemotherapy and may be useful as biomarkers to predict febrile neutropenia.PATIENTS & METHODS: 187 DNA samples extracted from formalin-fixed paraffin-embedded tissue from patients with stage II/III HER2-negative breast cancer were genotyped.RES
- PMID 26289095
Japanese Journal
- マウス胚性幹細胞由来の神経幹細胞に対する増殖因子の効果
- 吉江 拓也,大森 啓之,大津 昌弘,柴田 雅祥,中山 孝,井上 順雄
- 日本保健科学学会誌 16(4), 201-209, 2014-03-25
- 神経幹細胞は自己複製能と多分化能をもつ未分化な細胞である。本研究では,マウス胚性幹(ES)細胞からNeural Stem Sphere(NSS)法により調製した神経幹細胞に対する,線維芽細胞増殖因子-2(FGF-2)と上皮増殖因子(EGF)の影響を解析した。FGF-2およびEGFは濃度依存的に神経幹細胞の増殖を促進した。FGF-2はEGFより神経幹細胞への親和性が低いが,細胞増殖能は高く,両者の効 …
- NAID 110009809402
- The involvement of fibroblast growth factor receptor signaling pathways in dermatofibroma and dermatofibrosarcoma protuberans
- Ishigami Takeshi,Hida Yasutoshi,Matsudate Yoshihiro,Murao Kazutoshi,Kubo Yoshiaki
- The journal of medical investigation : JMI 60(1-2), 106-113, 2013-02
- … In addition, strong expression of FGF2 and FGFR4 was observed in the tumor lesions of DF. … Expression patterns of FGFR3/FOXN1 and FGF2/FGFR4 in DF were in contrast with those of DFSP. …
- NAID 120005380904
- The involvement of fibroblast growth factor receptor signaling pathways in dermatofibroma and dermatofibrosarcoma protuberans
- Ishigami Takeshi,Hida Yasutoshi,Matsudate Yoshihiro,Murao Kazutoshi,Kubo Yoshiaki
- The Journal of Medical Investigation 60(1.2), 106-113, 2013
- … In addition, strong expression of FGF2 and FGFR4 was observed in the tumor lesions of DF. … Expression patterns of FGFR3/FOXN1 and FGF2/FGFR4 in DF were in contrast with those of DFSP. …
- NAID 130004465277
Related Links
- Complete information for FGFR4 gene (protein-coding), fibroblast growth factor receptor 4, including: function, proteins, disorders, pathways, orthologs, and expression. GeneCards - The Human Gene Compendium ... Function for ...
- 本発明は、その断片または誘導体を含めたFGFR4抗体、および抗体をコードするポリヌクレオチドに関する。前記ポリヌクレオチドを含む発現ベクターおよび宿主細胞が提供される。さらに、本発明は、前記FGFR4抗体を含む ...
Related Pictures
★リンクテーブル★
[★]
- 英
- type 4 fibroblast growth factor receptor、FGFR4
- 関
- 線維芽細胞増殖因子レセプター4
[★]
線維芽細胞増殖因子受容体4、線維芽細胞増殖因子レセプター4
- 関
- FGFR4
[★]
線維芽細胞増殖因子 fibroblast growth factor