STRINGSTRING
A0A0E0MQC6 A0A0E0MQC6 A0A0E0NDS6 A0A0E0NDS6 A0A0E0NIR5 A0A0E0NIR5 A0A0E0NKZ1 A0A0E0NKZ1 A0A0E0NQV0 A0A0E0NQV0 A0A0E0NR21 A0A0E0NR21 A0A0E0NUB9 A0A0E0NUB9 A0A0E0NVB1 A0A0E0NVB1 A0A0E0MTL4 A0A0E0MTL4 A0A0E0P0C6 A0A0E0P0C6 A0A0E0P268 A0A0E0P268 A0A0E0P2D3 A0A0E0P2D3 A0A0E0P4C4 A0A0E0P4C4 A0A0E0PA04 A0A0E0PA04 A0A0E0PBW5 A0A0E0PBW5 A0A0E0PDY5 A0A0E0PDY5 A0A0E0PET7 A0A0E0PET7 A0A0E0PKI9 A0A0E0PKI9 A0A0E0PNK4 A0A0E0PNK4 A0A0E0PPA2 A0A0E0PPA2 A0A0E0PTF0 A0A0E0PTF0 A0A0E0N4R2 A0A0E0N4R2 A0A0E0PUP7 A0A0E0PUP7 A0A0E0PWW5 A0A0E0PWW5 A0A0E0Q1F5 A0A0E0Q1F5 A0A0E0Q8K1 A0A0E0Q8K1 A0A0E0Q954 A0A0E0Q954 A0A0E0QCY5 A0A0E0QCY5 A0A0E0QH77 A0A0E0QH77 A0A0E0QI53 A0A0E0QI53 A0A0E0QLN9 A0A0E0QLN9 A0A0E0QME0 A0A0E0QME0 A0A0E0QN31 A0A0E0QN31 A0A0E0QNW6 A0A0E0QNW6 A0A0E0R5Q4 A0A0E0R5Q4 A0A0E0R5R1 A0A0E0R5R1 A0A0E0R611 A0A0E0R611 A0A0E0RDY4 A0A0E0RDY4 A0A0E0RFC3 A0A0E0RFC3 A0A0E0RGS6 A0A0E0RGS6 A0A0E0N7A3 A0A0E0N7A3 A0A0E0NBH0 A0A0E0NBH0 A0A0E0NBH7 A0A0E0NBH7 A0A0E0N4K2 A0A0E0N4K2
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:
A0A0E0MQC6Protein RER1; Involved in the retrieval of endoplasmic reticulum membrane proteins from the early Golgi compartment. (196 aa)
A0A0E0NDS6Coatomer subunit zeta; The zeta subunit may be involved in regulating the coat assembly and, hence, the rate of biosynthetic protein transport due to its association-dissociation properties with the coatomer complex. (182 aa)
A0A0E0NIR5Uncharacterized protein. (283 aa)
A0A0E0NKZ1Uncharacterized protein. (782 aa)
A0A0E0NQV0Uncharacterized protein. (185 aa)
A0A0E0NR21Uncharacterized protein. (331 aa)
A0A0E0NUB9Uncharacterized protein. (355 aa)
A0A0E0NVB1Uncharacterized protein. (356 aa)
A0A0E0MTL4Uncharacterized protein; Belongs to the synaptobrevin family. (281 aa)
A0A0E0P0C6Uncharacterized protein. (1833 aa)
A0A0E0P268Uncharacterized protein. (302 aa)
A0A0E0P2D3Uncharacterized protein; Belongs to the synaptobrevin family. (247 aa)
A0A0E0P4C4Uncharacterized protein. (317 aa)
A0A0E0PA04Uncharacterized protein. (386 aa)
A0A0E0PBW5Syntaxin-18_N domain-containing protein. (322 aa)
A0A0E0PDY5Coatomer subunit epsilon; The coatomer is a cytosolic protein complex that binds to dilysine motifs and reversibly associates with Golgi non-clathrin- coated vesicles, which further mediate biosynthetic protein transport from the ER, via the Golgi up to the trans Golgi network. The coatomer complex is required for budding from Golgi membranes, and is essential for the retrograde Golgi-to-ER transport of dilysine-tagged proteins. Belongs to the COPE family. (287 aa)
A0A0E0PET7Coatomer subunit epsilon; The coatomer is a cytosolic protein complex that binds to dilysine motifs and reversibly associates with Golgi non-clathrin- coated vesicles, which further mediate biosynthetic protein transport from the ER, via the Golgi up to the trans Golgi network. The coatomer complex is required for budding from Golgi membranes, and is essential for the retrograde Golgi-to-ER transport of dilysine-tagged proteins. Belongs to the COPE family. (297 aa)
A0A0E0PKI9Coatomer subunit delta; The coatomer is a cytosolic protein complex that binds to dilysine motifs and reversibly associates with Golgi non-clathrin- coated vesicles, which further mediate biosynthetic protein transport from the ER, via the Golgi up to the trans Golgi network. (1047 aa)
A0A0E0PNK4Coatomer subunit zeta; The zeta subunit may be involved in regulating the coat assembly and, hence, the rate of biosynthetic protein transport due to its association-dissociation properties with the coatomer complex. (177 aa)
A0A0E0PPA2Uncharacterized protein. (344 aa)
A0A0E0PTF0Coatomer subunit beta; The coatomer is a cytosolic protein complex that binds to dilysine motifs and reversibly associates with Golgi non-clathrin- coated vesicles, which further mediate biosynthetic protein transport from the ER, via the Golgi up to the trans Golgi network. Coatomer complex is required for budding from Golgi membranes, and is essential for the retrograde Golgi-to-ER transport of dilysine-tagged proteins. (901 aa)
A0A0E0N4R2Coatomer subunit zeta; The zeta subunit may be involved in regulating the coat assembly and, hence, the rate of biosynthetic protein transport due to its association-dissociation properties with the coatomer complex. (280 aa)
A0A0E0PUP7Uncharacterized protein; Belongs to the synaptobrevin family. (218 aa)
A0A0E0PWW5Ribosomal protein L15; Belongs to the eukaryotic ribosomal protein eL15 family. (495 aa)
A0A0E0Q1F5Uncharacterized protein. (835 aa)
A0A0E0Q8K1Uncharacterized protein. (208 aa)
A0A0E0Q954Thioredoxin domain-containing protein. (485 aa)
A0A0E0QCY5Uncharacterized protein. (814 aa)
A0A0E0QH77Protein RER1; Involved in the retrieval of endoplasmic reticulum membrane proteins from the early Golgi compartment. (195 aa)
A0A0E0QI53Coatomer subunit delta; The coatomer is a cytosolic protein complex that binds to dilysine motifs and reversibly associates with Golgi non-clathrin- coated vesicles, which further mediate biosynthetic protein transport from the ER, via the Golgi up to the trans Golgi network. (670 aa)
A0A0E0QLN9Uncharacterized protein. (568 aa)
A0A0E0QME0DUF1992 domain-containing protein. (267 aa)
A0A0E0QN31Coatomer subunit alpha; The coatomer is a cytosolic protein complex that binds to dilysine motifs and reversibly associates with Golgi non-clathrin- coated vesicles, which further mediate biosynthetic protein transport from the ER, via the Golgi up to the trans Golgi network. (1218 aa)
A0A0E0QNW6Uncharacterized protein. (188 aa)
A0A0E0R5Q4Uncharacterized protein. (642 aa)
A0A0E0R5R1Uncharacterized protein. (1149 aa)
A0A0E0R611Uncharacterized protein. (1340 aa)
A0A0E0RDY4Syntaxin-18_N domain-containing protein. (315 aa)
A0A0E0RFC3Sec39 domain-containing protein. (2765 aa)
A0A0E0RGS6Uncharacterized protein. (101 aa)
A0A0E0N7A3Homeobox domain-containing protein. (1168 aa)
A0A0E0NBH0Uncharacterized protein. (1524 aa)
A0A0E0NBH7WD_REPEATS_REGION domain-containing protein. (201 aa)
A0A0E0N4K2Coatomer subunit delta; The coatomer is a cytosolic protein complex that binds to dilysine motifs and reversibly associates with Golgi non-clathrin- coated vesicles, which further mediate biosynthetic protein transport from the ER, via the Golgi up to the trans Golgi network. Coatomer complex is required for budding from Golgi membranes, and is essential for the retrograde Golgi-to-ER transport of dilysine-tagged proteins. (519 aa)
Your Current Organism:
Oryza rufipogon
NCBI taxonomy Id: 4529
Other names: O. rufipogon, Oryza rufipogon Griff., common wild rice, red rice
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