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Index > Protein center > Smad3(Gene name) > Mouse
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  • Smad3 (Gene name),
  • Mothers against decapentaplegic homolog 3 (Protein name ),  SMAD3_MOUSE from NCBI database.
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  • General Annotation
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  • Antigen Annotation
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  • Gene name:
    Smad3(Madh3);
    Protein name:
    Mothers against decapentaplegic homolog 3(MAD homolog 3;Mad3;Mothers against DPP homolog 3;mMad3);
    Alternative:
    SMAD family member 3(SMAD 3;Smad3);
    Organism:
    Mouse (Mus musculus). 
    General Annotation
    Sub Unit:
    Monomer; in the absence of TGF-beta (By similarity). Homooligomer; in the presence of TGF-beta (By similarity). Heterotrimer; forms a heterotrimer in the presence of TGF-beta consisting of two molecules of C-terminally phosphorylated SMAD2 or SMAD3 and one of SMAD4 to form the transcriptionally active SMAD2/SMAD3-SMAD4 complex. Interacts with TGFBR1 (By similarity). Interacts (via MH2 domain) with CITED2 (via C-terminus) (By similarity). Interacts (via the MH2 domain) with ZFYVE9. Interacts with HDAC1, VDR, TGIF and TGIF2, RUNX3, CREBBP, SKOR1, SKOR2, SNON, ATF2 and SMURF2. Interacts with DACH1; the interaction inhibits the TGF-beta signaling. Part of a complex consisting of AIP1, ACVR2A, ACVR1B and SMAD3. Forms a complex with SMAD2 and TRIM33 upon addition of TGF-beta. Found in a complex with SMAD3, RAN and XPO4. Interacts in the complex directly with XPO4. Interacts (via the MH2 domain) with LEMD3; the interaction represses SMAD3 transcriptional activity through preventing the formation of the heteromeric complex with SMAD4 and translocation to the nucleus. Interacts with RBPMS. Interacts (via MH2 domain) with MECOM. Interacts with WWTR1 (via its coiled-coil domain). Interacts (via the linker region) with EP300 (C-terminal); the interaction promotes SMAD3 acetylation and is enhanced by TGF-beta phosphorylation in the C-terminal of SMAD3. This interaction can be blocked by competitive binding of adenovirus oncoprotein E1A to the same C-terminal site on EP300, which then results in partially inhibited SMAD3/SMAD4 transcriptional activity. Interacts with SKI; the interaction represses SMAD3 transcriptional activity. Component of the multimeric complex SMAD3/SMAD4/JUN/FOS which forms at the AP1 promoter site; required for syngernistic transcriptional activity in response to TGF-beta. Interacts (via an N-terminal domain) with JUN (via its basic DNA binding and leucine zipper domains); this interaction is essential for DNA binding and cooperative transcriptional activity in response to TGF-beta. Interacts with PPM1A; the interaction dephosphorylates SMAD3 in the C-terminal SXS motif leading to disruption of the SMAD2/3-SMAD4 complex, nuclear export and termination of TGF-beta signaling. Interacts (dephosphorylated form via the MH1 and MH2 domains) with RANBP3 (via its C-terminal R domain); the interaction results in the export of dephosphorylated SMAD3 out of the nucleus and termination of the TGF-beta signaling (By similarity). Interacts with AIP1, TGFB1I1, TTRAP, FOXL2, PRDM16, HGS and WWP1. Interacts with NEDD4L; the interaction requires TGF-beta stimulation. Interacts with PML. Interacts with MEN1.
    Function:
    Receptor-regulated SMAD (R-SMAD) that is an intracellular signal transducer and transcriptional modulator activated by TGF-beta (transforming growth factor) and activin type 1 receptor kinases. Binds the TRE element in the promoter region of many genes that are regulated by TGF-beta and, on formation of the SMAD3/SMAD4 complex, activates transcription. Also can form a SMAD3/SMAD4/JUN/FOS complex at the AP-1/SMAD site to regulate TGF-beta-mediated transcription. Has an inhibitory effect on wound healing probably by modulating both growth and migration of primary keratinocytes and by altering the TGF-mediated chemotaxis of monocytes. This effect on wound healing appears to be hormone-sensitive. Regulator of chondrogenesis and osteogenesis and inhibits early healing of bone fractures.
    Subcellular Location:
    Cytoplasm Nucleus Cytoplasmic and nuclear in the absence of TGF-beta. On TGF-beta stimulation, migrates to the nucleus when complexed with SMAD4. Through the action of the phosphatase PPM1A, released from the SMAD2/SMAD4 complex, and exported out of the nucleus by interaction with RANBP1. Co-localizes with LEMD3 at the nucleus inner membrane. MAPK-mediated phosphorylation appears to have no effect on nuclear import.
    Protein Attributes:
    Sequence length:
    425
    Sequence:
    50:
    MSSILPFTPP | IVKRLLGWKK | GEQNGQEEKW | CEKAVKSLVK | KLKKTGQLDE | 
    100:
    LEKAITTQNV | NTKCITIPRS | LDGRLQVSHR | KGLPHVIYCR | LWRWPDLHSH | 
    150:
    HELRAMELCE | FAFNMKKDEV | CVNPYHYQRV | ETPVLPPVLV | PRHTEIPAEF | 
    200:
    PPLDDYSHSI | PENTNFPAGI | EPQSNIPETP | PPGYLSEDGE | TSDHQMNHSM | 
    250:
    DAGSPNLSPN | PMSPAHNNLD | LQPVTYCEPA | FWCSISYYEL | NQRVGETFHA | 
    300:
    SQPSMTVDGF | TDPSNSERFC | LGLLSNVNRN | AAVELTRRHI | GRGVRLYYIG | 
    350:
    GEVFAECLSD | SAIFVQSPNC | NQRYGWHPAT | VCKIPPGCNL | KIFNNQEFAA | 
    400:
    LLAQSVNQGF | EAVYQLTRMC | TIRMSFVKGW | GAEYRRQTVT | STPCWIELHL | 
    425:
    NGPLQWLDKV | LTQMGSPSIR | CSSVS
    3D Structure:
    N/A
    Predicted Eptitope:
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    EIAab Sequence  Vaild Sequence:
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    Related Databases
    UniGene:
    SMR:
    String:
    KEGG:
    Pfam:
    Uniprot:
     
    FOR
    ELISA Kit for Mouse MAD homolog 3
    Cat.:
    E2185h
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    ELISA Kit for Mouse MAD homolog 3
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    E2185p
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    ELISA Kit for Mouse MAD homolog 3
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    E2185r
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    ELISA Kit for Mouse MAD homolog 3
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    E2185c
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    ELISA Kit for Mouse MAD homolog 3
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    E2185m
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    96T
    CLIA Kit for Mouse MAD homolog 3
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    U2185r
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    CLIA Kit for Mouse MAD homolog 3
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    U2185c
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    MSDS:
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    Packing:
    96T
    CLIA Kit for Mouse MAD homolog 3
    Cat.:
    U2185h
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    MSDS:
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    CLIA Kit for Mouse MAD homolog 3
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    U2185m
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    MSDS:
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    Packing:
    96T
    CLIA Kit for Mouse MAD homolog 3
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    U2185p
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    Polyclonal Antibody for Mouse MAD homolog 3
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    P2185Rb-r
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    Polyclonal Antibody for Mouse MAD homolog 3
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    P2185Rb-h
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    Packing:
    40ug/0.2ml
    Polyclonal Antibody for Mouse MAD homolog 3
    Cat.:
    P2185Rb-m
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    Packing:
    40ug/0.2ml
    Polyclonal Antibody for Mouse MAD homolog 3
    Polyclonal Antibody for Mouse MAD homolog 3
    Monoclonal Antibody for Mouse MAD homolog 3
    Monoclonal Antibody for Mouse MAD homolog 3
    Monoclonal Antibody for Mouse MAD homolog 3
    Monoclonal Antibody for Mouse MAD homolog 3
    Monoclonal Antibody for Mouse MAD homolog 3
    Protein for Mouse MAD homolog 3
    Protein for Mouse MAD homolog 3
    Protein for Mouse MAD homolog 3
    Protein for Mouse MAD homolog 3
    Protein for Mouse MAD homolog 3

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    Precision
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    Recovery
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    Linearity
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    References
    1. 1.
      "Cloning and studies of the mouse cDNA encoding Smad3."
      Kano K. , Notani A. , Nam S.-Y. , Fujisawa M. , Kurohmaru M. , Hayashi Y.
      J. Vet. Med. Sci.61:213-219(1999) [PubMed] [Europe PMC] [Abstract]
      [15/1/25 17:38] Upload to ab completed in less than a minute: 1 file transferred (13.4 Kb/s) Cited for: NUCLEOTIDE SEQUENCE [MRNA];TISSUE SPECIFICITY
      tissue: Brain.
    2. 2.
      Yang X. , Xu X. , Shen S. , Deng C.
      Submitted (1997-07) to the EMBL/GenBank/DDBJ databases
      [15/1/25 17:38] Upload to ab completed in less than a minute: 1 file transferred (13.4 Kb/s) Cited for: NUCLEOTIDE SEQUENCE [MRNA]
      strain: C57BL/6.
    3. 3.
      "The transcriptional landscape of the mammalian genome."
      Carninci P. , Kasukawa T. , Katayama S. , Gough J. , Frith M.C. , Maeda N. , Oyama R. , Ravasi T. , Lenhard B. , Wells C. , Kodzius R. , Shimokawa K. , Bajic V.B. , Brenner S.E. , Batalov S. , Forrest A.R. , Zavolan M. , Davis M.J. , more...
      Science309:1559-1563(2005) [PubMed] [Europe PMC] [Abstract]
      [15/1/25 17:38] Upload to ab completed in less than a minute: 1 file transferred (13.4 Kb/s) Cited for: NUCLEOTIDE SEQUENCE [LARGE SCALE MRNA]
      strain: C57BL/6J.
      tissue: Head.
      tissue: Hippocampus.
    4. 4.
      "The status, quality, and expansion of the NIH full-length cDNA project: the Mammalian Gene Collection (MGC)."
      The MGC Project Team
      Genome Res.14:2121-2127(2004) [PubMed] [Europe PMC] [Abstract]
      [15/1/25 17:38] Upload to ab completed in less than a minute: 1 file transferred (13.4 Kb/s) Cited for: NUCLEOTIDE SEQUENCE [LARGE SCALE MRNA]
      strain: C57BL/6J.
      tissue: Embryo.
    5. 5.
      "Transforming growth factor beta-induced phosphorylation of Smad3 is required for growth inhibition and transcriptional induction in epithelial cells."
      Liu X. , Sun Y. , Constantinescu S.N. , Karam E. , Weinberg R.A. , Lodish H.F.
      Proc. Natl. Acad. Sci. U.S.A.94:10669-10674(1997) [PubMed] [Europe PMC] [Abstract]
      [15/1/25 17:38] Upload to ab completed in less than a minute: 1 file transferred (13.4 Kb/s) Cited for: PHOSPHORYLATION AT SER-422; SER-423 AND SER-425
    6. 6.
      "Mice lacking Smad3 show accelerated wound healing and an impaired local inflammatory response."
      Ashcroft G.S. , Yang X. , Glick A.B. , Weinstein M. , Letterio J.L. , Mizel D.E. , Anzano M. , Greenwell-Wild T. , Wahl S.M. , Deng C. , Roberts A.B.
      Nat. Cell Biol.1:260-266(1999) [PubMed] [Europe PMC] [Abstract]
      [15/1/25 17:38] Upload to ab completed in less than a minute: 1 file transferred (13.4 Kb/s) Cited for: DISRUPTION PHENOTYPE;FUNCTION
    7. 7.
      "Identification and characterization of a PDZ protein that interacts with activin types II receptors."
      Shoji H. , Tsuchida K. , Kishi H. , Yamakawa N. , Matsuzaki T. , Liu Z. , Nakamura T. , Sugino H.
      J. Biol. Chem.275:5485-5492(2000) [PubMed] [Europe PMC] [Abstract]
      [15/1/25 17:38] Upload to ab completed in less than a minute: 1 file transferred (13.4 Kb/s) Cited for: INTERACTION WITH AIP1;IDENTIFICATION IN A COMPLEX WITH AIP1; ACVR2A AND ACVR1B
    8. 8.
      "Hgs (Hrs), a FYVE domain protein, is involved in Smad signaling through cooperation with SARA."
      Miura S. , Takeshita T. , Asao H. , Kimura Y. , Murata K. , Sasaki Y. , Hanai J. , Beppu H. , Tsukazaki T. , Wrana J.L. , Miyazono K. , Sugamura K.
      Mol. Cell. Biol.20:9346-9355(2000) [PubMed] [Europe PMC] [Abstract]
      [15/1/25 17:38] Upload to ab completed in less than a minute: 1 file transferred (13.4 Kb/s) Cited for: INTERACTION WITH HGS
    9. 9.
      "The loss of Smad3 results in a lower rate of bone formation and osteopenia through dysregulation of osteoblast differentiation and apoptosis."
      Borton A.J. , Frederick J.P. , Datto M.B. , Wang X.F. , Weinstein R.S.
      J. Bone Miner. Res.16:1754-1764(2001) [PubMed] [Europe PMC] [Abstract]
      [15/1/25 17:38] Upload to ab completed in less than a minute: 1 file transferred (13.4 Kb/s) Cited for: DISRUPTION PHENOTYPE;FUNCTION
    10. 10.
      "Role of Smad3 in the hormonal modulation of in vivo wound healing responses."
      Ashcroft G.S. , Mills S.J. , Flanders K.C. , Lyakh L.A. , Anzano M.A. , Gilliver S.C. , Roberts A.B.
      Wound Repair Regen.11:468-473(2003) [PubMed] [Europe PMC] [Abstract]
      [15/1/25 17:38] Upload to ab completed in less than a minute: 1 file transferred (13.4 Kb/s) Cited for: DISRUPTION PHENOTYPE;FUNCTION
    11. 11.
      "A LIM protein, Hic-5, functions as a potential coactivator for Sp1."
      Shibanuma M. , Kim-Kaneyama J.-R. , Sato S. , Nose K.
      J. Cell. Biochem.91:633-645(2004) [PubMed] [Europe PMC] [Abstract]
      [15/1/25 17:38] Upload to ab completed in less than a minute: 1 file transferred (13.4 Kb/s) Cited for: INTERACTION WITH TGFB1I1
    12. 12.
      "Cytoplasmic PML function in TGF-beta signalling."
      Lin H.K. , Bergmann S. , Pandolfi P.P.
      Nature431:205-211(2004) [PubMed] [Europe PMC] [Abstract]
      [15/1/25 17:38] Upload to ab completed in less than a minute: 1 file transferred (13.4 Kb/s) Cited for: FUNCTION;SUBCELLULAR LOCATION;PHOSPHORYLATION;INTERACTION WITH PML AND ZFYVE9/SARA
    13. 13.
      "Negative regulation of transforming growth factor-beta (TGF-beta) signaling by WW domain-containing protein 1 (WWP1)."
      Komuro A. , Imamura T. , Saitoh M. , Yoshida Y. , Yamori T. , Miyazono K. , Miyazawa K.
      Oncogene23:6914-6923(2004) [PubMed] [Europe PMC] [Abstract]
      [15/1/25 17:38] Upload to ab completed in less than a minute: 1 file transferred (13.4 Kb/s) Cited for: INTERACTION WITH WWP1
    14. 14.
      "NEDD4-2 (neural precursor cell expressed, developmentally down-regulated 4-2) negatively regulates TGF-beta (transforming growth factor-beta) signalling by inducing ubiquitin-mediated degradation of Smad2 and TGF-beta type I receptor."
      Kuratomi G. , Komuro A. , Goto K. , Shinozaki M. , Miyazawa K. , Miyazono K. , Imamura T.
      Biochem. J.386:461-470(2005) [PubMed] [Europe PMC] [Abstract]
      [15/1/25 17:38] Upload to ab completed in less than a minute: 1 file transferred (13.4 Kb/s) Cited for: INTERACTION WITH NEDD4L
    15. 15.
      "PRDM16/MEL1: a novel Smad binding protein expressed in murine embryonic orofacial tissue."
      Warner D.R. , Horn K.H. , Mudd L. , Webb C.L. , Greene R.M. , Pisano M.M.
      Biochim. Biophys. Acta1773:814-820(2007) [PubMed] [Europe PMC] [Abstract]
      [15/1/25 17:38] Upload to ab completed in less than a minute: 1 file transferred (13.4 Kb/s) Cited for: INTERACTION WITH PRDM16
    16. 16.
      "Ttrap is an essential modulator of Smad3-dependent Nodal signaling during zebrafish gastrulation and left-right axis determination."
      Esguerra C.V. , Nelles L. , Vermeire L. , Ibrahimi A. , Crawford A.D. , Derua R. , Janssens E. , Waelkens E. , Carmeliet P. , Collen D. , Huylebroeck D.
      Development134:4381-4393(2007) [PubMed] [Europe PMC] [Abstract]
      [15/1/25 17:38] Upload to ab completed in less than a minute: 1 file transferred (13.4 Kb/s) Cited for: INTERACTION WITH TTRAP
    17. 17.
      "FoxL2 and Smad3 coordinately regulate follistatin gene transcription."
      Blount A.L. , Schmidt K. , Justice N.J. , Vale W.W. , Fischer W.H. , Bilezikjian L.M.
      J. Biol. Chem.284:7631-7645(2009) [PubMed] [Europe PMC] [Abstract]
      [15/1/25 17:38] Upload to ab completed in less than a minute: 1 file transferred (13.4 Kb/s) Cited for: INTERACTION WITH FOXL2
    18. 18.
      "Loss of Smad3 gives rise to poor soft callus formation and accelerates early fracture healing."
      Kawakatsu M. , Kanno S. , Gui T. , Gai Z. , Itoh S. , Tanishima H. , Oikawa K. , Muragaki Y.
      Exp. Mol. Pathol.90:107-115(2011) [PubMed] [Europe PMC] [Abstract]
      [15/1/25 17:38] Upload to ab completed in less than a minute: 1 file transferred (13.4 Kb/s) Cited for: DISRUPTION PHENOTYPE;FUNCTION
    19. 19.
      "Protein phosphatase 5 modulates SMAD3 function in the transforming growth factor-? pathway."
      Bruce D.L. , Macartney T. , Yong W. , Shou W. , Sapkota G.P.
      Cell. Signal.24:1999-2006(2012) [PubMed] [Europe PMC] [Abstract]
      [15/1/25 17:38] Upload to ab completed in less than a minute: 1 file transferred (13.4 Kb/s) Cited for: INTERACTION WITH PPP5C;SUBCELLULAR LOCATION
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