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A0A2C9TZR5 A0A2C9TZR5 A0A2C9UGQ4 A0A2C9UGQ4 A0A2C9UGY3 A0A2C9UGY3 A0A2C9UND2 A0A2C9UND2 A0A2C9UT49 A0A2C9UT49 A0A2C9V3F3 A0A2C9V3F3 A0A2C9V3N7 A0A2C9V3N7 A0A2C9VF52 A0A2C9VF52 A0A2C9VML1 A0A2C9VML1 A0A2C9VSB5 A0A2C9VSB5 A0A2C9VVE9 A0A2C9VVE9 A0A2C9VWF4 A0A2C9VWF4 A0A2C9VYG3 A0A2C9VYG3 A0A2C9WJE1 A0A2C9WJE1 A0A2C9WNI8 A0A2C9WNI8
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:
A0A2C9TZR5AP complex subunit sigma; Belongs to the adaptor complexes small subunit family. (142 aa)
A0A2C9UGQ4MHD domain-containing protein; Belongs to the adaptor complexes medium subunit family. (359 aa)
A0A2C9UGY3MHD domain-containing protein; Belongs to the adaptor complexes medium subunit family. (58 aa)
A0A2C9UND2Ubiquitin-like domain-containing protein. (156 aa)
A0A2C9UT49Ubiquitin-like domain-containing protein. (156 aa)
A0A2C9V3F3Clathrin heavy chain; Clathrin is the major protein of the polyhedral coat of coated pits and vesicles; Belongs to the clathrin heavy chain family. (1705 aa)
A0A2C9V3N7AP-2 complex subunit alpha; Subunit of the adaptor protein complex 2 (AP-2). Adaptor protein complexes function in protein transport via transport vesicles in different membrane traffic pathways. Adaptor protein complexes are vesicle coat components and appear to be involved in cargo selection and vesicle formation. AP-2 is involved in clathrin-dependent endocytosis in which cargo proteins are incorporated into vesicles surrounded by clathrin (clathrin-coated vesicles, CCVs) which are destined for fusion with the early endosome. (1020 aa)
A0A2C9VF52Ubiquitin-like domain-containing protein. (33 aa)
A0A2C9VML1Clathrin heavy chain; Clathrin is the major protein of the polyhedral coat of coated pits and vesicles; Belongs to the clathrin heavy chain family. (1705 aa)
A0A2C9VSB5Ubiquitin-like domain-containing protein. (156 aa)
A0A2C9VVE9Rhodanese domain-containing protein. (391 aa)
A0A2C9VWF4AP complex subunit sigma; Belongs to the adaptor complexes small subunit family. (142 aa)
A0A2C9VYG3AP-2 complex subunit alpha; Subunit of the adaptor protein complex 2 (AP-2). Adaptor protein complexes function in protein transport via transport vesicles in different membrane traffic pathways. Adaptor protein complexes are vesicle coat components and appear to be involved in cargo selection and vesicle formation. AP-2 is involved in clathrin-dependent endocytosis in which cargo proteins are incorporated into vesicles surrounded by clathrin (clathrin-coated vesicles, CCVs) which are destined for fusion with the early endosome. (981 aa)
A0A2C9WJE1Rhodanese domain-containing protein. (387 aa)
A0A2C9WNI8Ubiquitin-like domain-containing protein. (156 aa)
Your Current Organism:
Manihot esculenta
NCBI taxonomy Id: 3983
Other names: M. esculenta, Manihot esculenta Crantz, Manihot utilissima, cassava, manioc, tapioca, yuca
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