STRINGSTRING
R7V2A5_CAPTE R7V2A5_CAPTE N1PB06_CAPTE N1PB06_CAPTE R7T3U1_CAPTE R7T3U1_CAPTE R7T3W2_CAPTE R7T3W2_CAPTE R7T517_CAPTE R7T517_CAPTE R7T688_CAPTE R7T688_CAPTE R7T6C2_CAPTE R7T6C2_CAPTE R7T7V2_CAPTE R7T7V2_CAPTE R7T8U7_CAPTE R7T8U7_CAPTE R7TAW8_CAPTE R7TAW8_CAPTE R7TC11_CAPTE R7TC11_CAPTE R7TC62_CAPTE R7TC62_CAPTE R7TDG9_CAPTE R7TDG9_CAPTE R7TDQ1_CAPTE R7TDQ1_CAPTE R7TGM1_CAPTE R7TGM1_CAPTE R7TI15_CAPTE R7TI15_CAPTE R7TJ82_CAPTE R7TJ82_CAPTE R7TJU3_CAPTE R7TJU3_CAPTE R7TKU4_CAPTE R7TKU4_CAPTE R7TMM6_CAPTE R7TMM6_CAPTE R7TNC5_CAPTE R7TNC5_CAPTE R7TND5_CAPTE R7TND5_CAPTE R7TNK7_CAPTE R7TNK7_CAPTE R7TNX1_CAPTE R7TNX1_CAPTE R7TPJ5_CAPTE R7TPJ5_CAPTE R7TPW7_CAPTE R7TPW7_CAPTE R7TQH7_CAPTE R7TQH7_CAPTE R7TRR5_CAPTE R7TRR5_CAPTE R7TT68_CAPTE R7TT68_CAPTE R7TTF1_CAPTE R7TTF1_CAPTE R7TU16_CAPTE R7TU16_CAPTE R7TUN6_CAPTE R7TUN6_CAPTE R7TUZ2_CAPTE R7TUZ2_CAPTE R7TVF9_CAPTE R7TVF9_CAPTE R7TVL3_CAPTE R7TVL3_CAPTE R7TVV9_CAPTE R7TVV9_CAPTE R7TYX5_CAPTE R7TYX5_CAPTE R7U0Q1_CAPTE R7U0Q1_CAPTE R7U1F6_CAPTE R7U1F6_CAPTE R7U2Z1_CAPTE R7U2Z1_CAPTE R7U478_CAPTE R7U478_CAPTE R7U507_CAPTE R7U507_CAPTE R7U633_CAPTE R7U633_CAPTE R7U7H5_CAPTE R7U7H5_CAPTE R7U9A7_CAPTE R7U9A7_CAPTE R7UB79_CAPTE R7UB79_CAPTE R7UBI0_CAPTE R7UBI0_CAPTE R7UD78_CAPTE R7UD78_CAPTE R7UDX9_CAPTE R7UDX9_CAPTE R7UE39_CAPTE R7UE39_CAPTE R7UF98_CAPTE R7UF98_CAPTE R7UFK7_CAPTE R7UFK7_CAPTE R7UFQ7_CAPTE R7UFQ7_CAPTE R7UGC9_CAPTE R7UGC9_CAPTE R7UGQ3_CAPTE R7UGQ3_CAPTE R7UHX8_CAPTE R7UHX8_CAPTE R7UJF6_CAPTE R7UJF6_CAPTE R7UK52_CAPTE R7UK52_CAPTE R7UKA4_CAPTE R7UKA4_CAPTE R7UM79_CAPTE R7UM79_CAPTE R7UMI5_CAPTE R7UMI5_CAPTE R7USC4_CAPTE R7USC4_CAPTE R7UWD7_CAPTE R7UWD7_CAPTE R7UXG5_CAPTE R7UXG5_CAPTE R7UXI6_CAPTE R7UXI6_CAPTE R7UXQ8_CAPTE R7UXQ8_CAPTE R7V1D3_CAPTE R7V1D3_CAPTE R7V1P7_CAPTE R7V1P7_CAPTE R7V294_CAPTE R7V294_CAPTE R7V2K4_CAPTE R7V2K4_CAPTE R7V2M6_CAPTE R7V2M6_CAPTE R7V2Y5_CAPTE R7V2Y5_CAPTE R7V5T8_CAPTE R7V5T8_CAPTE R7V5U7_CAPTE R7V5U7_CAPTE R7V6Z3_CAPTE R7V6Z3_CAPTE R7V775_CAPTE R7V775_CAPTE R7V8D5_CAPTE R7V8D5_CAPTE R7V8R2_CAPTE R7V8R2_CAPTE R7V9E9_CAPTE R7V9E9_CAPTE R7VAC1_CAPTE R7VAC1_CAPTE R7VAJ0_CAPTE R7VAJ0_CAPTE R7VAT6_CAPTE R7VAT6_CAPTE R7VB03_CAPTE R7VB03_CAPTE R7VB62_CAPTE R7VB62_CAPTE R7VCJ0_CAPTE R7VCJ0_CAPTE R7VD40_CAPTE R7VD40_CAPTE R7VE58_CAPTE R7VE58_CAPTE R7VE63_CAPTE R7VE63_CAPTE R7VFA9_CAPTE R7VFA9_CAPTE R7VFW9_CAPTE R7VFW9_CAPTE R7VG38_CAPTE R7VG38_CAPTE R7VGG5_CAPTE R7VGG5_CAPTE R7VGK1_CAPTE R7VGK1_CAPTE R7VHD4_CAPTE R7VHD4_CAPTE R7VHW6_CAPTE R7VHW6_CAPTE R7VJQ4_CAPTE R7VJQ4_CAPTE R7VK07_CAPTE R7VK07_CAPTE R7VLB7_CAPTE R7VLB7_CAPTE R7VLG2_CAPTE R7VLG2_CAPTE R7VM53_CAPTE R7VM53_CAPTE R7VMB1_CAPTE R7VMB1_CAPTE R7VG13_CAPTE R7VG13_CAPTE
Nodes:
Network nodes represent proteins
splice isoforms or post-translational modifications are collapsed, i.e. each node represents all the proteins produced by a single, protein-coding gene locus.
Node Color
colored nodes:
query proteins and first shell of interactors
white nodes:
second shell of interactors
Node Content
empty nodes:
proteins of unknown 3D structure
filled nodes:
a 3D structure is known or predicted
Edges:
Edges represent protein-protein associations
associations are meant to be specific and meaningful, i.e. proteins jointly contribute to a shared function; this does not necessarily mean they are physically binding to each other.
Known Interactions
from curated databases
experimentally determined
Predicted Interactions
gene neighborhood
gene fusions
gene co-occurrence
Others
textmining
co-expression
protein homology
Your Input:
R7V2A5_CAPTEUncharacterized protein. (112 aa)
N1PB06_CAPTEUncharacterized protein. (347 aa)
R7T3U1_CAPTEHistone H3. (248 aa)
R7T3W2_CAPTEHistone H4; Core component of nucleosome. Nucleosomes wrap and compact DNA into chromatin, limiting DNA accessibility to the cellular machineries which require DNA as a template. Histones thereby play a central role in transcription regulation, DNA repair, DNA replication and chromosomal stability. DNA accessibility is regulated via a complex set of post-translational modifications of histones, also called histone code, and nucleosome remodeling. (103 aa)
R7T517_CAPTEPIH1 domain-containing protein. (210 aa)
R7T688_CAPTEUncharacterized protein. (327 aa)
R7T6C2_CAPTEUncharacterized protein. (772 aa)
R7T7V2_CAPTEUncharacterized protein. (841 aa)
R7T8U7_CAPTETAF domain-containing protein. (387 aa)
R7TAW8_CAPTEUncharacterized protein. (1448 aa)
R7TC11_CAPTEUncharacterized protein. (182 aa)
R7TC62_CAPTETFIID_20kDa domain-containing protein. (186 aa)
R7TDG9_CAPTEWD_REPEATS_REGION domain-containing protein. (406 aa)
R7TDQ1_CAPTEUncharacterized protein. (215 aa)
R7TGM1_CAPTEUncharacterized protein. (398 aa)
R7TI15_CAPTEHistone H3. (245 aa)
R7TJ82_CAPTEHistone H3; Belongs to the histone H3 family. (136 aa)
R7TJU3_CAPTEUncharacterized protein. (1305 aa)
R7TKU4_CAPTETranscription initiation factor IIA subunit 2; TFIIA is a component of the transcription machinery of RNA polymerase II and plays an important role in transcriptional activation; Belongs to the TFIIA subunit 2 family. (105 aa)
R7TMM6_CAPTECENP-T_C domain-containing protein. (282 aa)
R7TNC5_CAPTEHistone H3; Belongs to the histone H3 family. (136 aa)
R7TND5_CAPTEH15 domain-containing protein. (188 aa)
R7TNK7_CAPTEUncharacterized protein. (658 aa)
R7TNX1_CAPTEUncharacterized protein. (581 aa)
R7TPJ5_CAPTEHistone domain-containing protein. (115 aa)
R7TPW7_CAPTEUncharacterized protein. (347 aa)
R7TQH7_CAPTEMacro domain-containing protein; Belongs to the histone H2A family. (370 aa)
R7TRR5_CAPTEWD_REPEATS_REGION domain-containing protein. (579 aa)
R7TT68_CAPTEMis18 domain-containing protein. (209 aa)
R7TTF1_CAPTEH15 domain-containing protein. (717 aa)
R7TU16_CAPTEUncharacterized protein; Belongs to the histone H2A family. (170 aa)
R7TUN6_CAPTEHistone H4; Core component of nucleosome. Nucleosomes wrap and compact DNA into chromatin, limiting DNA accessibility to the cellular machineries which require DNA as a template. Histones thereby play a central role in transcription regulation, DNA repair, DNA replication and chromosomal stability. DNA accessibility is regulated via a complex set of post-translational modifications of histones, also called histone code, and nucleosome remodeling. (103 aa)
R7TUZ2_CAPTEH15 domain-containing protein. (89 aa)
R7TVF9_CAPTEJ domain-containing protein. (252 aa)
R7TVL3_CAPTEUncharacterized protein. (612 aa)
R7TVV9_CAPTECBFD_NFYB_HMF domain-containing protein. (150 aa)
R7TYX5_CAPTEUncharacterized protein. (231 aa)
R7U0Q1_CAPTEUncharacterized protein; Belongs to the nucleosome assembly protein (NAP) family. (274 aa)
R7U1F6_CAPTEUncharacterized protein. (462 aa)
R7U2Z1_CAPTEUncharacterized protein. (1501 aa)
R7U478_CAPTESHNi-TPR domain-containing protein. (142 aa)
R7U507_CAPTEHistone H4; Core component of nucleosome. Nucleosomes wrap and compact DNA into chromatin, limiting DNA accessibility to the cellular machineries which require DNA as a template. Histones thereby play a central role in transcription regulation, DNA repair, DNA replication and chromosomal stability. DNA accessibility is regulated via a complex set of post-translational modifications of histones, also called histone code, and nucleosome remodeling. (74 aa)
R7U633_CAPTECAF1-p150_C2 domain-containing protein. (863 aa)
R7U7H5_CAPTEH15 domain-containing protein. (79 aa)
R7U9A7_CAPTERRN7-type domain-containing protein. (880 aa)
R7UB79_CAPTEH15 domain-containing protein. (190 aa)
R7UBI0_CAPTEUncharacterized protein; Belongs to the histone H2A family. (164 aa)
R7UD78_CAPTEUncharacterized protein; Belongs to the histone H2A family. (164 aa)
R7UDX9_CAPTEUncharacterized protein. (2069 aa)
R7UE39_CAPTEUncharacterized protein. (569 aa)
R7UF98_CAPTEHistone H2B; Belongs to the histone H2B family. (123 aa)
R7UFK7_CAPTEH15 domain-containing protein. (134 aa)
R7UFQ7_CAPTEH15 domain-containing protein. (133 aa)
R7UGC9_CAPTEHistone H4; Core component of nucleosome. Nucleosomes wrap and compact DNA into chromatin, limiting DNA accessibility to the cellular machineries which require DNA as a template. Histones thereby play a central role in transcription regulation, DNA repair, DNA replication and chromosomal stability. DNA accessibility is regulated via a complex set of post-translational modifications of histones, also called histone code, and nucleosome remodeling. (75 aa)
R7UGQ3_CAPTEH15 domain-containing protein. (79 aa)
R7UHX8_CAPTEH15 domain-containing protein. (99 aa)
R7UJF6_CAPTEHistone H4; Core component of nucleosome. Nucleosomes wrap and compact DNA into chromatin, limiting DNA accessibility to the cellular machineries which require DNA as a template. Histones thereby play a central role in transcription regulation, DNA repair, DNA replication and chromosomal stability. DNA accessibility is regulated via a complex set of post-translational modifications of histones, also called histone code, and nucleosome remodeling. (186 aa)
R7UK52_CAPTEUncharacterized protein. (1867 aa)
R7UKA4_CAPTETFIIB-type domain-containing protein. (144 aa)
R7UM79_CAPTEUncharacterized protein. (70 aa)
R7UMI5_CAPTETAFII28 domain-containing protein. (196 aa)
R7USC4_CAPTEHistone H2B; Belongs to the histone H2B family. (114 aa)
R7UWD7_CAPTEGFA domain-containing protein. (136 aa)
R7UXG5_CAPTETPR_REGION domain-containing protein. (559 aa)
R7UXI6_CAPTEUncharacterized protein; Belongs to the nucleosome assembly protein (NAP) family. (252 aa)
R7UXQ8_CAPTEUncharacterized protein. (491 aa)
R7V1D3_CAPTEUncharacterized protein; Belongs to the histone H2A family. (164 aa)
R7V1P7_CAPTETAFII55_N domain-containing protein. (346 aa)
R7V294_CAPTEH15 domain-containing protein. (97 aa)
R7V2K4_CAPTEUncharacterized protein. (403 aa)
R7V2M6_CAPTEKinesin-like protein; Belongs to the TRAFAC class myosin-kinesin ATPase superfamily. Kinesin family. (321 aa)
R7V2Y5_CAPTEDaxx domain-containing protein. (244 aa)
R7V5T8_CAPTEHistone domain-containing protein. (171 aa)
R7V5U7_CAPTEUncharacterized protein. (238 aa)
R7V6Z3_CAPTEBTP domain-containing protein. (129 aa)
R7V775_CAPTEH15 domain-containing protein. (190 aa)
R7V8D5_CAPTEUncharacterized protein. (182 aa)
R7V8R2_CAPTEPHD-type domain-containing protein. (253 aa)
R7V9E9_CAPTEHistone H3; Belongs to the histone H3 family. (136 aa)
R7VAC1_CAPTEUncharacterized protein. (106 aa)
R7VAJ0_CAPTEUncharacterized protein; Belongs to the histone H2A family. (164 aa)
R7VAT6_CAPTEMyb_DNA-bind_7 domain-containing protein. (495 aa)
R7VB03_CAPTEUncharacterized protein. (527 aa)
R7VB62_CAPTEH15 domain-containing protein. (79 aa)
R7VCJ0_CAPTEUncharacterized protein; Belongs to the nucleosome assembly protein (NAP) family. (263 aa)
R7VD40_CAPTEHistone H3; Belongs to the histone H3 family. (136 aa)
R7VE58_CAPTEUncharacterized protein. (2313 aa)
R7VE63_CAPTEHistone domain-containing protein. (121 aa)
R7VFA9_CAPTEUncharacterized protein. (285 aa)
R7VFW9_CAPTECENP-C_C domain-containing protein. (1312 aa)
R7VG38_CAPTEHistone H2B; Belongs to the histone H2B family. (118 aa)
R7VGG5_CAPTEHistone H4; Core component of nucleosome. Nucleosomes wrap and compact DNA into chromatin, limiting DNA accessibility to the cellular machineries which require DNA as a template. Histones thereby play a central role in transcription regulation, DNA repair, DNA replication and chromosomal stability. DNA accessibility is regulated via a complex set of post-translational modifications of histones, also called histone code, and nucleosome remodeling. (100 aa)
R7VGK1_CAPTEH15 domain-containing protein. (203 aa)
R7VHD4_CAPTECBFD_NFYB_HMF domain-containing protein. (187 aa)
R7VHW6_CAPTEHistone domain-containing protein; Belongs to the histone H2B family. (62 aa)
R7VJQ4_CAPTERECA_2 domain-containing protein. (138 aa)
R7VK07_CAPTEUncharacterized protein; Belongs to the nucleosome assembly protein (NAP) family. (414 aa)
R7VLB7_CAPTETAF domain-containing protein. (602 aa)
R7VLG2_CAPTEUncharacterized protein. (364 aa)
R7VM53_CAPTEUncharacterized protein. (184 aa)
R7VMB1_CAPTERECA_2 domain-containing protein. (146 aa)
R7VG13_CAPTEPHD domain-containing protein. (59 aa)
Your Current Organism:
Capitella teleta
NCBI taxonomy Id: 283909
Other names: C. teleta, Capitella sp. I, Capitella sp. I AF-2005, Capitella sp. I ECS-2004, Capitella sp. I ES-2005, Capitella sp. MKJ-2016, Capitella teleta Blake, Grassle & Eckelbarger, 2009
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