AP2M1 Antibody - #DF6961
Product: | AP2M1 Antibody |
Catalog: | DF6961 |
Description: | Rabbit polyclonal antibody to AP2M1 |
Application: | WB IHC |
Reactivity: | Human, Mouse, Rat |
Prediction: | Pig, Bovine, Horse, Sheep, Rabbit, Dog, Chicken, Xenopus |
Mol.Wt.: | 49kDa; 50kD(Calculated). |
Uniprot: | Q96CW1 |
RRID: | AB_2838917 |
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Protocols
Product Info
*The optimal dilutions should be determined by the end user.
*Tips:
WB: For western blot detection of denatured protein samples. IHC: For immunohistochemical detection of paraffin sections (IHC-p) or frozen sections (IHC-f) of tissue samples. IF/ICC: For immunofluorescence detection of cell samples. ELISA(peptide): For ELISA detection of antigenic peptide.
Cite Format: Affinity Biosciences Cat# DF6961, RRID:AB_2838917.
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Adapter-related protein complex 2 mu subunit; Adaptin mu 1; Adaptin-mu2; Adaptor protein complex AP 2 subunit mu; Adaptor protein complex AP-2 subunit mu; Adaptor related protein complex 2 mu 1 subunit; AP 2 mu 2 chain; AP-2 complex subunit mu; AP-2 mu chain; Ap2m1; AP2M1_HUMAN; AP50; CLAPM1; Clathrin adaptor complex AP2 mu subunit; Clathrin assembly protein complex 2 medium chain; Clathrin associated/assembly/adaptor protein medium 1; Clathrin coat adaptor protein AP50; Clathrin coat assembly protein AP50; Clathrin coat associated protein AP50; Clathrin coat-associated protein AP50; HA2 50 kDa subunit; mu2; Plasma membrane adaptor AP-2 50 kDa protein;
Immunogens
- Q96CW1 AP2M1_HUMAN:
- Protein BLAST With
- NCBI/
- ExPASy/
- Uniprot
MIGGLFIYNHKGEVLISRVYRDDIGRNAVDAFRVNVIHARQQVRSPVTNIARTSFFHVKRSNIWLAAVTKQNVNAAMVFEFLYKMCDVMAAYFGKISEENIKNNFVLIYELLDEILDFGYPQNSETGALKTFITQQGIKSQHQTKEEQSQITSQVTGQIGWRREGIKYRRNELFLDVLESVNLLMSPQGQVLSAHVSGRVVMKSYLSGMPECKFGMNDKIVIEKQGKGTADETSKSGKQSIAIDDCTFHQCVRLSKFDSERSISFIPPDGEFELMRYRTTKDIILPFRVIPLVREVGRTKLEVKVVIKSNFKPSLLAQKIEVRIPTPLNTSGVQVICMKGKAKYKASENAIVWKIKRMAGMKESQISAEIELLPTNDKKKWARPPISMNFEVPFAPSGLKVRYLKVFEPKLNYSDHDVIKWVRYIGRSGIYETRC
Predictions
Score>80(red) has high confidence and is suggested to be used for WB detection. *The prediction model is mainly based on the alignment of immunogen sequences, the results are for reference only, not as the basis of quality assurance.
High(score>80) Medium(80>score>50) Low(score<50) No confidence
PTMs - Q96CW1 As Substrate
Site | PTM Type | Enzyme | Source |
---|---|---|---|
S45 | Phosphorylation | Uniprot | |
K139 | Ubiquitination | Uniprot | |
K145 | Ubiquitination | Uniprot | |
T152 | Phosphorylation | Uniprot | |
S153 | Phosphorylation | Uniprot | |
T156 | Phosphorylation | Q2M2I8 (AAK1) | Uniprot |
K203 | Acetylation | Uniprot | |
C212 | S-Nitrosylation | Uniprot | |
K219 | Ubiquitination | Uniprot | |
K224 | Ubiquitination | Uniprot | |
K227 | Ubiquitination | Uniprot | |
K235 | Ubiquitination | Uniprot | |
S236 | Phosphorylation | Uniprot | |
K238 | Ubiquitination | Uniprot | |
S240 | Phosphorylation | Uniprot | |
K256 | Acetylation | Uniprot | |
K256 | Ubiquitination | Uniprot | |
S259 | Phosphorylation | Uniprot | |
S262 | Phosphorylation | Uniprot | |
K281 | Ubiquitination | Uniprot | |
K304 | Acetylation | Uniprot | |
K304 | Ubiquitination | Uniprot | |
K308 | Acetylation | Uniprot | |
K308 | Ubiquitination | Uniprot | |
K312 | Ubiquitination | Uniprot | |
K339 | Ubiquitination | Uniprot | |
Y344 | Phosphorylation | Uniprot | |
K345 | Ubiquitination | Uniprot | |
S347 | Phosphorylation | Uniprot | |
K378 | Ubiquitination | Uniprot | |
K379 | Ubiquitination | Uniprot | |
K380 | Ubiquitination | Uniprot | |
S387 | Phosphorylation | Uniprot | |
S397 | Phosphorylation | Uniprot | |
K400 | Ubiquitination | Uniprot | |
K405 | Ubiquitination | Uniprot | |
K410 | Ubiquitination | Uniprot | |
S414 | Phosphorylation | Uniprot | |
K420 | Acetylation | Uniprot | |
K420 | Ubiquitination | Uniprot | |
Y431 | Phosphorylation | Uniprot | |
T433 | Phosphorylation | Uniprot |
Research Backgrounds
Component 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. The clathrin lattice serves as a mechanical scaffold but is itself unable to bind directly to membrane components. Clathrin-associated adaptor protein (AP) complexes which can bind directly to both the clathrin lattice and to the lipid and protein components of membranes are considered to be the major clathrin adaptors contributing the CCV formation. AP-2 also serves as a cargo receptor to selectively sort the membrane proteins involved in receptor-mediated endocytosis. AP-2 seems to play a role in the recycling of synaptic vesicle membranes from the presynaptic surface. AP-2 recognizes Y-X-X-[FILMV] (Y-X-X-Phi) and [ED]-X-X-X-L-[LI] endocytosis signal motifs within the cytosolic tails of transmembrane cargo molecules. AP-2 may also play a role in maintaining normal post-endocytic trafficking through the ARF6-regulated, non-clathrin pathway. During long-term potentiation in hippocampal neurons, AP-2 is responsible for the endocytosis of ADAM10. The AP-2 mu subunit binds to transmembrane cargo proteins; it recognizes the Y-X-X-Phi motifs. The surface region interacting with to the Y-X-X-Phi motif is inaccessible in cytosolic AP-2, but becomes accessible through a conformational change following phosphorylation of AP-2 mu subunit at 'Tyr-156' in membrane-associated AP-2. The membrane-specific phosphorylation event appears to involve assembled clathrin which activates the AP-2 mu kinase AAK1 (By similarity). Plays a role in endocytosis of frizzled family members upon Wnt signaling (By similarity).
Cell membrane. Membrane>Coated pit>Peripheral membrane protein>Cytoplasmic side.
Note: AP-2 appears to be excluded from internalizing CCVs and to disengage from sites of endocytosis seconds before internalization of the nascent CCV.
Expressed in the brain (at protein level).
Adapter protein complex 2 (AP-2) is a heterotetramer composed of two large adaptins (alpha-type subunit AP2A1 or AP2A2 and beta-type subunit AP2B1), a medium adaptin (mu-type subunit AP2M1) and a small adaptin (sigma-type subunit AP2S1) (By similarity). Interacts with ATP6V1H and MEGF10. Interacts with EGFR and TTGN1 (By similarity). Interacts with F2R. Interacts with PIP5K1C; tyrosine phosphorylation of PIP5K1C weakens the interaction (By similarity). Interacts with KIAA0319; required for clathrin-mediated endocytosis of KIAA0319. Interacts with DVL2 (via DEP domain) (By similarity). Interacts with KCNQ1; mediates estrogen-induced internalization via clathrin-coated vesicles. Interacts with P2RX4 (via internalization motif) (By similarity). Together with AP2A1 or AP2A2 and AP2B1, it interacts with ADAM10; this interaction facilitates ADAM10 endocytosis from the plasma membrane during long-term potentiation in hippocampal neurons.
Belongs to the adaptor complexes medium subunit family.
Research Fields
· Cellular Processes > Transport and catabolism > Endocytosis. (View pathway)
· Human Diseases > Neurodegenerative diseases > Huntington's disease.
· Organismal Systems > Nervous system > Synaptic vesicle cycle.
· Organismal Systems > Excretory system > Endocrine and other factor-regulated calcium reabsorption.
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