• Version:
  • 11.0 [archived version]
STRINGSTRING
MNT MNT HSFX1 HSFX1 TMEM159 TMEM159 MXD4 MXD4 CACFD1 CACFD1 MXD1 MXD1 MXD3 MXD3 MAX MAX MYC MYC STX7 STX7 EXD1 EXD1 STX17 STX17 TSNARE1 TSNARE1 MXI1 MXI1 STX12 STX12 STX16 STX16
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.
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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:
some 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 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:
MNTMax-binding protein MNT; Binds DNA as a heterodimer with MAX and represses transcription. Binds to the canonical E box sequence 5’-CACGTG-3’ and, with higher affinity, to 5’-CACGCG-3’; Basic helix-loop-helix proteins (582 aa)
TMEM159Promethin; Transmembrane protein 159; Belongs to the TMEM159 family (161 aa)
STX17Syntaxin-17; SNAREs, soluble N-ethylmaleimide-sensitive factor- attachment protein receptors, are essential proteins for fusion of cellular membranes. SNAREs localized on opposing membranes assemble to form a trans-SNARE complex, an extended, parallel four alpha-helical bundle that drives membrane fusion. STX17 is a SNARE of the autophagosome involved in autophagy through the direct control of autophagosome membrane fusion with the lysosome membrane. May also play a role in the early secretory pathway where it may maintain the architecture of the endoplasmic reticulum-Golgi intermediat [...] (302 aa)
MXD1Max dimerization protein 1; Transcriptional repressor. MAD binds with MAX to form a sequence-specific DNA-binding protein complex which recognizes the core sequence 5’-CAC[GA]TG-3’. MAD thus antagonizes MYC transcriptional activity by competing for MAX; Basic helix-loop-helix proteins (221 aa)
TSNARE1t-SNARE domain containing 1 (514 aa)
MXI1Max-interacting protein 1; Transcriptional repressor. MXI1 binds with MAX to form a sequence-specific DNA-binding protein complex which recognizes the core sequence 5’-CAC[GA]TG-3’. MXI1 thus antagonizes MYC transcriptional activity by competing for MAX; Basic helix-loop-helix proteins (295 aa)
MXD4Max dimerization protein 4; Transcriptional repressor. Binds with MAX to form a sequence-specific DNA-binding protein complex which recognizes the core sequence 5’-CAC[GA]TG-3’. Antagonizes MYC transcriptional activity by competing for MAX and suppresses MYC dependent cell transformation (By similarity); Basic helix-loop-helix proteins (209 aa)
MAXProtein max; Transcription regulator. Forms a sequence-specific DNA- binding protein complex with MYC or MAD which recognizes the core sequence 5’-CAC[GA]TG-3’. The MYC-MAX complex is a transcriptional activator, whereas the MAD-MAX complex is a repressor. May repress transcription via the recruitment of a chromatin remodeling complex containing H3 ’Lys-9’ histone methyltransferase activity. Represses MYC transcriptional activity from E-box elements (160 aa)
STX7Syntaxin-7; May be involved in protein trafficking from the plasma membrane to the early endosome (EE) as well as in homotypic fusion of endocytic organelles. Mediates the endocytic trafficking from early endosomes to late endosomes and lysosomes; Belongs to the syntaxin family (261 aa)
HSFX1Heat shock transcription factor family, X-linked 1 (423 aa)
STX16Syntaxin-16; SNARE involved in vesicular transport from the late endosomes to the trans-Golgi network; Belongs to the syntaxin family (325 aa)
STX12Syntaxin-12; SNARE that acts to regulate protein transport between late endosomes and the trans-Golgi network. The SNARE complex containing STX6, STX12, VAMP4 and VTI1A mediates vesicle fusion (in vitro) (By similarity). Through complex formation with GRIP1, GRIA2 and NSG1 controls the intracellular fate of AMPAR and the endosomal sorting of the GRIA2 subunit toward recycling and membrane targeting (By similarity); Belongs to the syntaxin family (276 aa)
MXD3Max dimerization protein 3; Transcriptional repressor. Binds with MAX to form a sequence-specific DNA-binding protein complex which recognizes the core sequence 5’-CAC[GA]TG-3’. Antagonizes MYC transcriptional activity by competing for MAX and suppresses MYC dependent cell transformation (By similarity); Basic helix-loop-helix proteins (206 aa)
EXD1piRNA biogenesis protein EXD1; RNA-binding component of the PET complex, a multiprotein complex required for the processing of piRNAs during spermatogenesis. The piRNA metabolic process mediates the repression of transposable elements during meiosis by forming complexes composed of piRNAs and Piwi proteins and governs the methylation and subsequent repression of transposable elements, preventing their mobilization, which is essential for the germline integrity (By similarity). The PET complex is required during the secondary piRNAs metabolic process for the PIWIL2 slicing- triggered lo [...] (572 aa)
CACFD1Calcium channel flower domain containing 1 (233 aa)
MYCMyc proto-oncogene protein; Transcription factor that binds DNA in a non-specific manner, yet also specifically recognizes the core sequence 5’- CAC[GA]TG-3’. Activates the transcription of growth-related genes. Binds to the VEGFA promoter, promoting VEGFA production and subsequent sprouting angiogenesis; Basic helix-loop-helix proteins (454 aa)
Your Current Organism:
Homo sapiens
NCBI taxonomy Id: 9606
Other names: H. sapiens, Homo sapiens, human, man
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