Basic Information
Gene Structure
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Domain
| Database | EntryID | E-Value | Start | end | InterPro ID | Description |
|---|
Regulation&Interaction
Annotation
Orthologous Group
| Orthologous ID | Species Number | All hits in PereRegDB | Hits of this species | Orthologous Detail |
|---|
Expression Profile
| DataSet | Number of Samples expressed(TPM>1) | Mean | Min | Max | Standard deviation(SD) | Coeffcient variation(CV) |
|---|
Pathway
| GO Term | Description | GO Category |
|---|---|---|
| GO:0000902 | cell morphogenesis | BP |
| GO:0000904 | cell morphogenesis involved in differentiation | BP |
| GO:0005575 | cellular_component | CC |
| GO:0005622 | intracellular anatomical structure | CC |
| GO:0005623 | obsolete cell | CC |
| GO:0005634 | nucleus | CC |
| GO:0005737 | cytoplasm | CC |
| GO:0005768 | endosome | CC |
| GO:0005770 | late endosome | CC |
| GO:0005771 | multivesicular body | CC |
| GO:0005911 | cell-cell junction | CC |
| GO:0006810 | transport | BP |
| GO:0006996 | organelle organization | BP |
| GO:0007032 | endosome organization | BP |
| GO:0007033 | vacuole organization | BP |
| GO:0008150 | biological_process | BP |
| GO:0009506 | plasmodesma | CC |
| GO:0009653 | anatomical structure morphogenesis | BP |
| GO:0009888 | tissue development | BP |
| GO:0009987 | cellular process | BP |
| GO:0010026 | trichome differentiation | BP |
| GO:0010090 | trichome morphogenesis | BP |
| GO:0010091 | trichome branching | BP |
| GO:0010256 | endomembrane system organization | BP |
| GO:0012505 | endomembrane system | CC |
| GO:0016043 | cellular component organization | BP |
| GO:0016050 | vesicle organization | BP |
| GO:0016192 | vesicle-mediated transport | BP |
| GO:0030054 | cell junction | CC |
| GO:0030154 | cell differentiation | BP |
| GO:0031410 | cytoplasmic vesicle | CC |
| GO:0031982 | vesicle | CC |
| GO:0032502 | developmental process | BP |
| GO:0032989 | cellular component morphogenesis | BP |
| GO:0042592 | homeostatic process | BP |
| GO:0043226 | organelle | CC |
| GO:0043227 | membrane-bounded organelle | CC |
| GO:0043229 | intracellular organelle | CC |
| GO:0043231 | intracellular membrane-bounded organelle | CC |
| GO:0044424 | obsolete intracellular part | CC |
| GO:0044444 | obsolete cytoplasmic part | CC |
| GO:0044464 | obsolete cell part | CC |
| GO:0048468 | cell development | BP |
| GO:0048856 | anatomical structure development | BP |
| GO:0048869 | cellular developmental process | BP |
| GO:0048878 | chemical homeostasis | BP |
| GO:0050801 | monoatomic ion homeostasis | BP |
| GO:0051179 | localization | BP |
| GO:0051234 | establishment of localization | BP |
| GO:0055044 | symplast | CC |
| GO:0055065 | obsolete metal ion homeostasis | BP |
| GO:0055067 | obsolete monovalent inorganic cation homeostasis | BP |
| GO:0055075 | potassium ion homeostasis | BP |
| GO:0055078 | sodium ion homeostasis | BP |
| GO:0055080 | monoatomic cation homeostasis | BP |
| GO:0065007 | biological regulation | BP |
| GO:0065008 | regulation of biological quality | BP |
| GO:0071840 | cellular component organization or biogenesis | BP |
| GO:0090558 | plant epidermis development | BP |
| GO:0090626 | plant epidermis morphogenesis | BP |
| GO:0097708 | intracellular vesicle | CC |
| GO:0098771 | inorganic ion homeostasis | BP |
| KEGG Term | Name | Description |
|---|---|---|
| map04144 | Endocytosis | Endocytosis is a mechanism for cells to remove ligands, nutrients, and plasma membrane (PM) proteins, and lipids from the cell surface, bringing them into the cell interior. Transmembrane proteins entering through clathrin-dependent endocytosis (CDE) have sequences in their cytoplasmic domains that bind to the APs (adaptor-related protein complexes) and enable their rapid removal from the PM. In addition to APs and clathrin, there are numerous accessory proteins including dynamin. Depending on the various proteins that enter the endosome membrane, these cargoes are sorted to distinct destinations. Some cargoes, such as nutrient receptors, are recycled back to the PM. Ubiquitylated membrane proteins, such as activated growth-factor receptors, are sorted into intraluminal vesicles and eventually end up in the lysosome lumen via multivesicular endosomes (MVEs). There are distinct mechanisms of clathrin-independent endocytosis (CIE) depending upon the cargo and the cell type. |

