Description : (at3g28040 : 96.3) Leucine-rich receptor-like protein kinase family protein; FUNCTIONS IN: protein serine/threonine kinase activity, kinase activity, ATP binding; INVOLVED IN: transmembrane receptor protein tyrosine kinase signaling pathway, protein amino acid phosphorylation; LOCATED IN: endomembrane system; EXPRESSED IN: 23 plant structures; EXPRESSED DURING: 13 growth stages; CONTAINS InterPro DOMAIN/s: Protein kinase, ATP binding site (InterPro:IPR017441), Protein kinase, catalytic domain (InterPro:IPR000719), Leucine-rich repeat-containing N-terminal domain, type 2 (InterPro:IPR013210), Leucine-rich repeat (InterPro:IPR001611), Serine/threonine-protein kinase-like domain (InterPro:IPR017442), Protein kinase-like domain (InterPro:IPR011009); BEST Arabidopsis thaliana protein match is: Leucine-rich repeat protein kinase family protein (TAIR:AT3G56370.1); Has 223464 Blast hits to 137757 proteins in 4468 species: Archae - 159; Bacteria - 21919; Metazoa - 74524; Fungi - 10664; Plants - 90017; Viruses - 245; Other Eukaryotes - 25936 (source: NCBI BLink). & (q8lpb4|pskr_dauca : 89.0) Phytosulfokine receptor precursor (EC 2.7.11.1) (Phytosulfokine LRR receptor kinase) - Daucus carota (Carrot) & (reliability: 184.0) & (original description: no original description)
Gene families : OG_42_0001593 (Orthogroups_2024-Update) Phylogenetic Tree(s): OG0001593_tree
Note:Only the main profile, including all conditions, is shown. Additional statistics and tissue specific profiles are available here.
Type | Description | Actions |
---|---|---|
Neighborhood | Pseudotsuga release: PSME_00053191-RA | |
Cluster | HCCA clusters: Cluster_73 |
Type | GO Term | Name | Evidence | Source |
---|---|---|---|---|
MF | GO:0005515 | protein binding | IEA | InterProScan predictions |
Type | GO Term | Name | Evidence | Source |
---|---|---|---|---|
MF | GO:0000287 | magnesium ion binding | IEP | Predicted GO |
MF | GO:0003697 | single-stranded DNA binding | IEP | Predicted GO |
BP | GO:0006606 | protein import into nucleus | IEP | Predicted GO |
BP | GO:0006913 | nucleocytoplasmic transport | IEP | Predicted GO |
MF | GO:0008017 | microtubule binding | IEP | Predicted GO |
MF | GO:0009055 | electron transfer activity | IEP | Predicted GO |
BP | GO:0009690 | cytokinin metabolic process | IEP | Predicted GO |
MF | GO:0010333 | terpene synthase activity | IEP | Predicted GO |
BP | GO:0010817 | regulation of hormone levels | IEP | Predicted GO |
MF | GO:0015098 | molybdate ion transmembrane transporter activity | IEP | Predicted GO |
MF | GO:0015631 | tubulin binding | IEP | Predicted GO |
BP | GO:0015689 | molybdate ion transport | IEP | Predicted GO |
MF | GO:0016829 | lyase activity | IEP | Predicted GO |
MF | GO:0016835 | carbon-oxygen lyase activity | IEP | Predicted GO |
MF | GO:0016838 | carbon-oxygen lyase activity, acting on phosphates | IEP | Predicted GO |
BP | GO:0017038 | protein import | IEP | Predicted GO |
MF | GO:0019139 | cytokinin dehydrogenase activity | IEP | Predicted GO |
BP | GO:0033365 | protein localization to organelle | IEP | Predicted GO |
BP | GO:0034504 | protein localization to nucleus | IEP | Predicted GO |
BP | GO:0034613 | cellular protein localization | IEP | Predicted GO |
BP | GO:0034754 | cellular hormone metabolic process | IEP | Predicted GO |
BP | GO:0042445 | hormone metabolic process | IEP | Predicted GO |
MF | GO:0046983 | protein dimerization activity | IEP | Predicted GO |
BP | GO:0051169 | nuclear transport | IEP | Predicted GO |
BP | GO:0051170 | import into nucleus | IEP | Predicted GO |
MF | GO:0061608 | nuclear import signal receptor activity | IEP | Predicted GO |
BP | GO:0070727 | cellular macromolecule localization | IEP | Predicted GO |
BP | GO:0072594 | establishment of protein localization to organelle | IEP | Predicted GO |
MF | GO:0140104 | molecular carrier activity | IEP | Predicted GO |
MF | GO:0140142 | nucleocytoplasmic carrier activity | IEP | Predicted GO |
InterPro domains | Description | Start | Stop |
---|---|---|---|
IPR001611 | Leu-rich_rpt | 77 | 136 |
No external refs found! |