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IID50044
UniprotP35465
ProteinSerine/threonine-protein kinase PAK 1
GenePak1
OrganismRattus norvegicus
Sequence LLPS PhaSepDB
PhaSePro
LLPSDB
DrLLPS
Network xml rdf
Structure
Experiment
  :order   disorder   conflict   PDB cluster   ProS   Pfam Domain   SEG
544
 order/disorder by at least rule
     disorder by at least rule
     order by at least rule
 order/disorder by majority rule
Seqdisorder 75-118
 Evidence NMR Reference
       Region 75-118 disorder
Seq 75-118 Hetero dimer : IID00308Complex
 Evidence NMR 1e0a B Reference
       Region 1e0a B 75-108 order
       Region 1e0a B 109-118 disorder
       Region 1e0a B 113-118 high_rmsd
SeqProS verified 75-108 Hetero dimer : IID00308Complex
       Region 1e0a B 75-108 order
       Region 75-118 disorder
Seqphosphorylation
    21-21 Phosphoserine; by PKB and autocatalysis
    57-57 Phosphoserine; by autocatalysis
    84-84 Phosphothreonine; by OXSR1
    115-115 Phosphoserine
    131-131 Phosphotyrosine
    142-142 Phosphotyrosine
    144-144 Phosphoserine; by autocatalysis
    149-149 Phosphoserine; by autocatalysis
    229-229 Phosphothreonine
    422-422 Phosphothreonine; by autocatalysis
    153-153 Phosphotyrosine; by JAK2
    284-284 Phosphotyrosine; by JAK2
    228-228 Phosphothreonine
    224-224 Phosphothreonine
    219-219 Phosphoserine
    222-222 Phosphoserine
    218-218 Phosphothreonine
    211-211 Phosphothreonine
    203-203 Phosphoserine; by autocatalysis
    200-200 Phosphotyrosine; by JAK2
    198-198 Phosphoserine; by autocatalysis
    174-174 Phosphoserine
    184-184 Phosphothreonine
Seqacetylation
    2-2 N-acetylserine
 
Prediction
NeProc
Disorder 1-75,114-248,538-544
Order 76-113,249-537
ProS 1-19,75-75,114-160,179-182,202-209,538-544
AlphaFold
Disorder 1-72,80-83,133-246,543-544
Order 73-79,84-132,247-542
Pfam Hmmer
PF00786 74-132 2.6e-31
PF00069 269-520 5.6e-99
SEG 39-51 ,168-191
Function
Function in SwissProt
Protein kinase involved in intracellular signaling pathways downstream of integrins and receptor-type kinases that plays an important role in cytoskeleton dynamics, in cell adhesion, migration, proliferation, apoptosis, mitosis, and in vesicle-mediated transport processes. Can directly phosphorylate BAD and protects cells against apoptosis. Activated by interaction with CDC42 and RAC1. Functions as GTPase effector that links the Rho-related GTPases CDC42 and RAC1 to the JNK MAP kinase pathway. Phosphorylates and activates MAP2K1, and thereby mediates activation of downstream MAP kinases. Involved in the reorganization of the actin cytoskeleton, actin stress fibers and of focal adhesion complexes. Phosphorylates the tubulin chaperone TBCB and thereby plays a role in the regulation of microtubule biogenesis and organization of the tubulin cytoskeleton. Plays a role in the regulation of insulin secretion in response to elevated glucose levels. Part of a ternary complex that contains PAK1, DVL1 and MUSK that is important for MUSK-dependent regulation of AChR clustering during the formation of the neuromuscular junction (NMJ). Activity is inhibited in cells undergoing apoptosis, potentially due to binding of CDC2L1 and CDC2L2. Phosphorylates MYL9/MLC2. Phosphorylates RAF1 at 'Ser-338' and 'Ser-339' resulting in: activation of RAF1, stimulation of RAF1 translocation to mitochondria, phosphorylation of BAD by RAF1, and RAF1 binding to BCL2. Phosphorylates SNAI1 at 'Ser-246' promoting its transcriptional repressor activity by increasing its accumulation in the nucleus. In podocytes, promotes NR3C2 nuclear localization. Required for atypical chemokine receptor ACKR2-induced phosphorylation of LIMK1 and cofilin (CFL1) and for the up-regulation of ACKR2 from endosomal compartment to cell membrane, increasing its efficiency in chemokine uptake and degradation. In synapses, seems to mediate the regulation of F-actin cluster formation performed by SHANK3, maybe through CFL1 phosphorylation and inactivation. Plays a role in RUFY3-mediated facilitating gastric cancer cells migration and invasion. In response to DNA damage, phosphorylates MORC2 which activates its ATPase activity and facilitates chromatin remodeling (By similarity). In neurons, plays a crucial role in regulating GABA(A) receptor synaptic stability and hence GABAergic inhibitory synaptic transmission through its role in F-actin stabilization (PubMed:25284783). In hippocampal neurons, necessary for the formation of dendritic spines and excitatory synapses; this function is dependent on kinase activity and may be exerted by the regulation of actomyosin contractility through the phosphorylation of myosin II regulatory light chain (MLC) (By similarity). Along with GIT1, positively regulates microtubule nucleation during interphase (By similarity).