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View Protein Complex Details

Complex Overview

From Publication: Mewes, H. W. et al. MIPS: Analysis and annotation of proteins from whole genomes. Nucleic Acids Res. 32, D41-D44
Notes: MIPS hand-curated complex set. MIPS complex ID: 230.20.20
Complex Size: 16 proteins

Complex Member Proteins

Protein

GO Cellular Component GO Biological Process GO Molecular Function
ADA2
  • SLIK (SAGA-like) complex
  • Ada2/Gcn5/Ada3 transcription activator complex
  • SAGA complex
  • chromatin modification
  • histone acetylation
  • transcription coactivator activity
  • GCN5
  • SLIK (SAGA-like) complex
  • Ada2/Gcn5/Ada3 transcription activator complex
  • SAGA complex
  • chromatin modification
  • histone acetylation
  • histone acetyltransferase activity
  • transcription coactivator activity
  • HFI1
  • SLIK (SAGA-like) complex
  • Ada2/Gcn5/Ada3 transcription activator complex
  • SAGA complex
  • chromatin modification
  • telomere maintenance
  • transcription from RNA polymerase II promoter
  • histone acetylation
  • transcription cofactor activity
  • transcription coactivator activity
  • NGG1
  • SLIK (SAGA-like) complex
  • Ada2/Gcn5/Ada3 transcription activator complex
  • SAGA complex
  • chromatin modification
  • response to drug
  • histone acetylation
  • transcription cofactor activity
  • SGF29
  • SAGA complex
  • histone acetylation
  • molecular_function
  • SGF73
  • SLIK (SAGA-like) complex
  • SAGA complex
  • chromatin modification
  • histone acetylation
  • histone acetyltransferase activity
  • structural molecule activity
  • SPT20
  • SLIK (SAGA-like) complex
  • SAGA complex
  • chromatin modification
  • histone acetylation
  • transcription cofactor activity
  • SPT3
  • SLIK (SAGA-like) complex
  • SAGA complex
  • chromatin modification
  • ascospore formation
  • conjugation with cellular fusion
  • pseudohyphal growth
  • histone acetylation
  • invasive growth in response to glucose limitation
  • transcription cofactor activity
  • SPT7
  • SLIK (SAGA-like) complex
  • mitochondrion
  • SAGA complex
  • chromatin modification
  • protein complex assembly
  • conjugation with cellular fusion
  • histone acetylation
  • structural molecule activity
  • SPT8
  • nucleus
  • SAGA complex
  • negative regulation of transcription from RNA polymerase II promoter
  • positive regulation of transcription from RNA polymerase II promoter
  • transcription cofactor activity
  • TATA-binding protein binding
  • TAF10
  • transcription factor TFIID complex
  • SLIK (SAGA-like) complex
  • SAGA complex
  • chromatin modification
  • protein amino acid acetylation
  • histone acetylation
  • chromatin organization
  • regulation of transcription involved in G1 phase of mitotic cell cycle
  • transcription initiation from RNA polymerase II promoter
  • general RNA polymerase II transcription factor activity
  • TAF12
  • transcription factor TFIID complex
  • SLIK (SAGA-like) complex
  • SAGA complex
  • chromatin modification
  • protein amino acid acetylation
  • histone acetylation
  • chromatin organization
  • regulation of transcription involved in G1 phase of mitotic cell cycle
  • transcription initiation from RNA polymerase II promoter
  • general RNA polymerase II transcription factor activity
  • TAF5
  • transcription factor TFIID complex
  • SLIK (SAGA-like) complex
  • SAGA complex
  • chromatin modification
  • protein amino acid acetylation
  • histone acetylation
  • chromatin organization
  • regulation of transcription involved in G1 phase of mitotic cell cycle
  • transcription initiation from RNA polymerase II promoter
  • general RNA polymerase II transcription factor activity
  • TAF6
  • transcription factor TFIID complex
  • SLIK (SAGA-like) complex
  • SAGA complex
  • chromatin modification
  • protein amino acid acetylation
  • histone acetylation
  • chromatin organization
  • regulation of transcription involved in G1 phase of mitotic cell cycle
  • transcription initiation from RNA polymerase II promoter
  • general RNA polymerase II transcription factor activity
  • TAF9
  • transcription factor TFIID complex
  • SLIK (SAGA-like) complex
  • SAGA complex
  • chromatin modification
  • protein amino acid acetylation
  • histone acetylation
  • chromatin organization
  • regulation of transcription involved in G1 phase of mitotic cell cycle
  • transcription initiation from RNA polymerase II promoter
  • general RNA polymerase II transcription factor activity
  • TRA1
  • NuA4 histone acetyltransferase complex
  • SLIK (SAGA-like) complex
  • SAGA complex
  • histone acetyltransferase complex
  • DNA repair
  • histone acetylation
  • regulation of transcription from RNA polymerase II promoter
  • histone acetyltransferase activity
  • Cellular Component Analysis

    Given the number of proteins in the complex (A), total proteins annotated with a given GO term (B), and the total number of annotated proteins (T); the p-value represents the chances of randomly having the number of proteins in the complex annotated with a specific GO term (I).

    Only showing terms with a p-value less than or equal to 0.01.

    GO Term

    P-value

    A

    B

    I

    T

    SAGA complex 2.637E-43 16 22 16 6292
    SAGA-type complex 8.6643E-43 16 23 16 6292
    SLIK (SAGA-like) complex 8.3513E-39 16 16 14 6292
    histone acetyltransferase complex 1.4727E-36 16 44 16 6292
    nucleoplasm part 1.7258E-23 16 245 16 6292
    nucleoplasm 5.9149E-23 16 264 16 6292
    nuclear lumen 4.0631E-19 16 453 16 6292
    organelle lumen 1.823E-16 16 660 16 6292
    intracellular organelle lumen 1.823E-16 16 660 16 6292
    membrane-enclosed lumen 4.7232E-16 16 700 16 6292
    nuclear part 7.2679E-13 16 1103 16 6292
    protein complex 1.1852E-12 16 1137 16 6292
    Ada2/Gcn5/Ada3 transcription activator complex 1.3927E-10 16 5 4 6292
    transcription factor TFIID complex 1.5755E-10 16 15 5 6292
    macromolecular complex 4.0924E-10 16 1635 16 6292
    nucleus 1.444E-8 16 2041 16 6292
    organelle part 8.6662E-8 16 2282 16 6292
    intracellular organelle part 8.6662E-8 16 2282 16 6292
    DNA-directed RNA polymerase II, holoenzyme 1.8874E-7 16 56 5 6292
    transcription factor complex 6.2931E-7 16 71 5 6292
    membrane-bounded organelle 2.7361E-4 16 3771 16 6292
    intracellular membrane-bounded organelle 2.7361E-4 16 3771 16 6292
    intracellular organelle 9.2974E-4 16 4070 16 6292
    organelle 9.334E-4 16 4071 16 6292

    Biological Process Analysis

    Given the number of proteins in the complex (A), total proteins annotated with a given GO term (B), and the total number of annotated proteins (T); the p-value represents the chances of randomly having the number of proteins in the complex annotated with a specific GO term (I).

    Only showing terms with a p-value less than or equal to 0.01.

    GO Term

    P-value

    A

    B

    I

    T

    histone acetylation 1.2313E-34 16 36 15 6292
    protein amino acid acetylation 1.13E-32 16 46 15 6292
    protein amino acid acylation 8.7923E-31 16 59 15 6292
    covalent chromatin modification 6.9625E-28 16 88 15 6292
    histone modification 6.9625E-28 16 88 15 6292
    chromatin modification 2.0871E-23 16 168 15 6292
    chromatin organization 3.9759E-22 16 203 15 6292
    post-translational protein modification 2.3297E-18 16 357 15 6292
    protein modification process 3.7686E-16 16 499 15 6292
    chromosome organization 1.8816E-15 16 555 15 6292
    macromolecule modification 2.7409E-15 16 569 15 6292
    cellular protein metabolic process 3.7773E-11 16 1074 15 6292
    organelle organization 7.7426E-11 16 1127 15 6292
    protein metabolic process 8.7162E-11 16 1136 15 6292
    regulation of transcription involved in G1 phase of mitotic cell cycle 1.0519E-10 16 14 5 6292
    G1 phase 4.1619E-9 16 27 5 6292
    G1 phase of mitotic cell cycle 4.1619E-9 16 27 5 6292
    cellular component organization 1.1829E-8 16 1582 15 6292
    transcription initiation from RNA polymerase II promoter 7.6798E-8 16 47 5 6292
    cellular macromolecule metabolic process 8.851E-8 16 2285 16 6292
    macromolecule metabolic process 1.379E-7 16 2349 16 6292
    transcription initiation 2.2574E-7 16 58 5 6292
    transcription from RNA polymerase II promoter 5.2568E-7 16 335 8 6292
    regulation of transcription from RNA polymerase II promoter 6.4796E-7 16 228 7 6292
    protein complex biogenesis 1.3251E-6 16 155 6 6292
    protein complex assembly 1.3251E-6 16 155 6 6292
    interphase of mitotic cell cycle 2.9982E-6 16 97 5 6292
    interphase 2.9982E-6 16 97 5 6292
    primary metabolic process 3.9666E-6 16 2896 16 6292
    cellular metabolic process 8.3256E-6 16 3033 16 6292
    transcription, DNA-dependent 1.1429E-5 16 503 8 6292
    RNA biosynthetic process 1.2302E-5 16 508 8 6292
    regulation of transcription, DNA-dependent 1.3324E-5 16 358 7 6292
    regulation of RNA metabolic process 1.4599E-5 16 363 7 6292
    metabolic process 1.5832E-5 16 3157 16 6292
    regulation of transcription 2.1121E-5 16 384 7 6292
    transcription 2.2768E-5 16 552 8 6292
    regulation of nucleobase, nucleoside, nucleotide and nucleic acid metabolic process 3.506E-5 16 415 7 6292
    regulation of nitrogen compound metabolic process 3.5614E-5 16 416 7 6292
    macromolecular complex assembly 4.1235E-5 16 281 6 6292
    regulation of gene expression 5.5118E-5 16 445 7 6292
    regulation of macromolecule biosynthetic process 6.4521E-5 16 456 7 6292
    regulation of cellular biosynthetic process 8.054E-5 16 472 7 6292
    regulation of biosynthetic process 8.1641E-5 16 473 7 6292
    regulation of macromolecule metabolic process 9.9716E-5 16 488 7 6292
    regulation of primary metabolic process 1.3883E-4 16 514 7 6292
    macromolecular complex subunit organization 1.5755E-4 16 357 6 6292
    regulation of cellular metabolic process 1.8107E-4 16 536 7 6292
    regulation of metabolic process 2.0586E-4 16 547 7 6292
    cellular component assembly 2.3891E-4 16 385 6 6292
    mitotic cell cycle 3.1792E-4 16 255 5 6292
    biological regulation 1.1018E-3 16 1213 9 6292
    RNA metabolic process 1.1201E-3 16 954 8 6292
    cell cycle phase 1.8715E-3 16 376 5 6292
    regulation of cellular process 2.0519E-3 16 796 7 6292
    regulation of biological process 2.5166E-3 16 824 7 6292
    cellular process 3.565E-3 16 4426 16 6292
    cellular macromolecule biosynthetic process 4.773E-3 16 1187 8 6292
    macromolecule biosynthetic process 4.8251E-3 16 1189 8 6292
    cellular component biogenesis 5.3341E-3 16 694 6 6292
    cell cycle process 5.9543E-3 16 490 5 6292
    gene expression 7.8351E-3 16 1283 8 6292
    cell cycle 7.9806E-3 16 525 5 6292

    Molecular Function Analysis

    Given the number of proteins in the complex (A), total proteins annotated with a given GO term (B), and the total number of annotated proteins (T); the p-value represents the chances of randomly having the number of proteins in the complex annotated with a specific GO term (I).

    Only showing terms with a p-value less than or equal to 0.01.

    GO Term

    P-value

    A

    B

    I

    T

    transcription regulator activity 7.4214E-13 16 339 12 6292
    transcription cofactor activity 2.6504E-12 16 40 7 6292
    transcription factor binding 4.5638E-12 16 43 7 6292
    general RNA polymerase II transcription factor activity 3.7233E-7 16 64 5 6292
    histone acetyltransferase activity 8.9795E-6 16 17 3 6292
    lysine N-acetyltransferase activity 8.9795E-6 16 17 3 6292
    RNA polymerase II transcription factor activity 1.2684E-5 16 130 5 6292
    transcription coactivator activity 1.7454E-5 16 21 3 6292
    N-acetyltransferase activity 7.028E-5 16 33 3 6292
    N-acyltransferase activity 1.0783E-4 16 38 3 6292
    acetyltransferase activity 2.459E-4 16 50 3 6292
    protein binding 4.1565E-4 16 612 7 6292
    transcription activator activity 4.4387E-4 16 61 3 6292
    transferase activity, transferring acyl groups other than amino-acyl groups 1.476E-3 16 92 3 6292
    acyltransferase activity 1.476E-3 16 92 3 6292
    transferase activity, transferring acyl groups 2.279E-3 16 107 3 6292
    TATA-binding protein binding 5.0798E-3 16 2 1 6292

    YRC Informatics Platform - Version 3.0
    Created and Maintained by: Michael Riffle