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Anti-DAP Kinase 1 antibody

SKU Product Brand Unit Availability Price Quantity  
AB-06-1314
Anti-DAP Kinase 1 antibody
Erpan Tech In stock

Specifications        

Product Cat#: AB-06-1314
Product type: Primary antibody
Antigen: DAP Kinase 1
Immunogen: Recombinant protein within Human DAP Kinase 1 aa 450-670.
Species immunized: Mouse
Isotype: IgG1
Applications: Western Blot (1:450); Immunohistochemistry (1:100-1:200)
Reactivity: Human, Mouse, Rat
Clonality (clone number): Monoclonal (12B2)
Form: Liquid
Buffer: 1*TBS (pH 7.4), 1% BSA, 50% Glycerol. Preservative: 0.05% Sodium Azide.
Concentration: 2 mg/ml
Purity: Protein  affinity purified
Storage: Aliquot and freeze at -20℃. Avoid multiple freeze/thaw cycles.
Alternative names: DAK1 antibody
DAP K1 antibody
DAP kinase 1 antibody
DAPK 1 antibody
DAPK antibody
DAPK1 antibody
DAPK1_HUMAN antibody
Death Associated Protein Kinase 1 antibody
Death-associated protein kinase 1 antibody
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Target information

Calcium/calmodulin-dependent serine/threonine kinase involved in multiple cellular signaling pathways that trigger cell survival, apoptosis, and autophagy. Regulates both type I apoptotic and type II autophagic cell deaths signal, depending on the cellular setting. The former is caspase-dependent, while the latter is caspase-independent and is characterized by the accumulation of autophagic vesicles. Phosphorylates PIN1 resulting in inhibition of its catalytic activity, nuclear localization, and cellular function. Phosphorylates TPM1, enhancing stress fiber formation in endothelial cells. Phosphorylates STX1A and significantly decreases its binding to STXBP1. Phosphorylates PRKD1 and regulates JNK signaling by binding and activating PRKD1 under oxidative stress. Phosphorylates BECN1, reducing its interaction with BCL2 and BCL2L1 and promoting the induction of autophagy. Phosphorylates TSC2, disrupting the TSC1-TSC2 complex and stimulating mTORC1 activity in a growth factor-dependent pathway. Phosphorylates RPS6, MYL9 and DAPK3. Acts as a signaling amplifier of NMDA receptors at extrasynaptic sites for mediating brain damage in stroke. Cerebral ischemia recruits DAPK1 into the NMDA receptor complex and it phosphorylates GRINB at Ser-1303 inducing injurious Ca2+ influx through NMDA receptor channels, resulting in an irreversible neuronal death. Required together with DAPK3 for phosphorylation of RPL13A upon interferon-gamma activation which is causing RPL13A involvement in transcript-selective translation inhibition. Isoform 2 cannot induce apoptosis but can induce membrane blebbing.

Provider

Erpantech Laboratory

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