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Index > Protein center > Eif3f(Gene name) > Mouse
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  • Eif3f (Gene name),
  • Eukaryotic translation initiation factor 3 subunit F (Protein name ),  EIF3F_MOUSE from NCBI database.
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  • General Annotation
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  • Antigen Annotation
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  • Gene name:
    Eif3f(Eif3s5);
    Protein name:
    Eukaryotic translation initiation factor 3 subunit F(eIF3f);
    Alternative:
    eIF-3-epsilon;3.4.19.12;Eukaryotic translation initiation factor 3 subunit 5);eIF3 p47;eIF3 p47;
    Organism:
    Mouse (Mus musculus). 
    General Annotation
    Sub Unit:
    Component of the eukaryotic translation initiation factor 3 (eIF-3) complex, which is composed of 13 subunits: EIF3A, EIF3B, EIF3C, EIF3D, EIF3E, EIF3F, EIF3G, EIF3H, EIF3I, EIF3J, EIF3K, EIF3L and EIF3M. The eIF-3 complex appears to include 3 stable modules: module A is composed of EIF3A, EIF3B, EIF3G and EIF3I; module B is composed of EIF3F, EIF3H, and EIF3M; and module C is composed of EIF3C, EIF3D, EIF3E, EIF3K and EIF3L. EIF3C of module C binds EIF3B of module A and EIF3H of module B, thereby linking the three modules. EIF3J is a labile subunit that binds to the eIF-3 complex via EIF3B. The eIF-3 complex may interact with RPS6KB1 under conditions of nutrient depletion. Mitogenic stimulation may lead to binding and activation of a complex composed of MTOR and RPTOR, leading to phosphorylation and release of RPS6KB1 and binding of EIF4B to eIF-3. Interacts with RNF139; the interaction leads to protein translation inhibitions in a ubiquitination-dependent manner.
    Function:
    Component of the eukaryotic translation initiation factor 3 (eIF-3) complex, which is required for several steps in the initiation of protein synthesis. The eIF-3 complex associates with the 40S ribosome and facilitates the recruitment of eIF-1, eIF-1A, eIF-2:GTP:methionyl-tRNAi and eIF-5 to form the 43S preinitiation complex (43S PIC). The eIF-3 complex stimulates mRNA recruitment to the 43S PIC and scanning of the mRNA for AUG recognition. The eIF-3 complex is also required for disassembly and recycling of posttermination ribosomal complexes and subsequently prevents premature joining of the 40S and 60S ribosomal subunits prior to initiation.
    Subcellular Location:
    Cytoplasm
    Protein Attributes:
    Sequence length:
    361
    Sequence:
    50:
    MASPAVPANV | PPATAAAAPA | PVVTAAPASA | PTPSTPAPTP | AATPAASPAP | 
    100:
    VSSDPAVAAP | AAPGQTPASA | PAPAQTPAPS | QPGPALPGPF | PGGRVVRLHP | 
    150:
    VILASIVDSY | ERRNEGAARV | IGTLLGTVDK | HSVEVTNCFS | VPHNESEDEV | 
    200:
    AVDMEFAKNM | YELHKKVSPN | ELILGWYATG | HDITEHSVLI | HEYYSREAPN | 
    250:
    PIHLTVDTGL | QHGRMSIKAY | VSTLMGVPGR | TMGVMFTPLT | VKYAYYDTER | 
    300:
    IGVDLIMKTC | FSPNRVIGLS | SDLQQVGGAS | ARIQDALSTV | LQYAEDVLSG | 
    350:
    KVSADNTVGR | FLMSLVNQVP | KIVPDDFETM | LNSNINDLLM | VTYLANLTQS | 
    361:
    QIALNEKLVN | L
    3D Structure:
    N/A
    Predicted Eptitope:
    Please Sign in.
    EIAab Sequence  Vaild Sequence:
    Please Sign in.
    Related Databases
    KEGG:
    SMR:
    Pfam:
    UniGene:
    String:
    Uniprot:
     
    FOR
    ELISA Kit for Mouse eIF3f
    ELISA Kit for Mouse eIF3f
    CLIA Kit for Mouse eIF3f
    CLIA Kit for Mouse eIF3f
    Polyclonal Antibody for Mouse eIF3f
    Polyclonal Antibody for Mouse eIF3f
    Monoclonal Antibody for Mouse eIF3f
    Monoclonal Antibody for Mouse eIF3f
    Protein for Mouse eIF3f
    Protein for Mouse eIF3f

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    Precision
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    Recovery
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    Linearity
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    References
    1. 1.
      "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: Kidney.
    2. 2.
      Mural R.J. , Adams M.D. , Myers E.W. , Smith H.O. , Venter J.C.
      Submitted (2005-07) 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 [LARGE SCALE GENOMIC DNA]
    3. 3.
      "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/6.
      tissue: Brain.
    4. 4.
      "mTOR-dependent stimulation of the association of eIF4G and eIF3 by insulin."
      Harris T.E. , Chi A. , Shabanowitz J. , Hunt D.F. , Rhoads R.E. , Lawrence J.C. Jr.
      EMBO J.25:1659-1668(2006) [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 EIF3B AND MTOR
    5. 5.
      "Reconstitution reveals the functional core of mammalian eIF3."
      Masutani M. , Sonenberg N. , Yokoyama S. , Imataka H.
      EMBO J.26:3373-3383(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: CHARACTERIZATION OF THE EIF-3 COMPLEX;IDENTIFICATION IN THE EIF-3 COMPLEX;IDENTIFICATION BY MASS SPECTROMETRY
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