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AMPK1 Antibody (N-term)Purified Rabbit Polyclonal Antibody (Pab)

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United States
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Ordering Information
Catalog # Size Availability Price  
AP7255a 0.1 mg 400 ul In Stock $ 255.00 Add to cart
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AMPK1 Antibody (N-term) - Product info

ApplicationWB, IHC, FC
  • Applications Legend:
  • W=Western Blotting
  • IP=Immunoprecipitation
  • IHC-P=Immunohistochemistry (Paraffin)
  • IF-IC=Immunofluorescence (Immunocytochemistry)
  • F=Flow Cytometry
Primary AccessionQ13131
Other AccessionP54645, Q5EG47
ReactivityHuman
PredictedMouse, Rat
Concentration0.25 mg/ml
IsotypeRabbit Ig
Calculated MW64009 Da

AMPK1 Antibody (N-term) - Additional info

Gene ID 5562
Other Names
PRKAA1; AMPK1; 5'-AMP-activated protein kinase catalytic subunit alpha-1; Acetyl-CoA carboxylase kinase; Hydroxymethylglutaryl-CoA reductase kinase; Tau-protein kinase PRKAA1
Target/Specificity
This AMPK1 antibody is generated from rabbits immunized with a KLH conjugated synthetic peptide between 15~45 amino acids from the N-terminal region of human AMPK1.
Dilution
WB~~1:50~100
IHC~~1:10~50
FC~~1:10~50
Format
Purified polyclonal antibody supplied in PBS with 0.09% (W/V) sodium azide. This antibody is prepared by Saturated Ammonium Sulfate (SAS) precipitation followed by dialysis against PBS.
Storage
Maintain refrigerated at 2-8°C for up to 6 months. For long term storage store at -20°C in small aliquots to prevent freeze-thaw cycles.
Precautions
AMPK1 Antibody (N-term) is for research use only and not for use in diagnostic or therapeutic procedures.

AMPK1 Antibody (N-term) - Protein Information

Name PRKAA1
Synonyms AMPK1
Function
Catalytic subunit of AMP-activated protein kinase (AMPK), an energy sensor protein kinase that plays a key role in regulating cellular energy metabolism. In response to reduction of intracellular ATP levels, AMPK activates energy-producing pathways and inhibits energy-consuming processes: inhibits protein, carbohydrate and lipid biosynthesis, as well as cell growth and proliferation. AMPK acts via direct phosphorylation of metabolic enzymes, and by longer-term effects via phosphorylation of transcription regulators. Also acts as a regulator of cellular polarity by remodeling the actin cytoskeleton; probably by indirectly activating myosin. Regulates lipid synthesis by phosphorylating and inactivating lipid metabolic enzymes such as ACACA, ACACB, GYS1, HMGCR and LIPE; regulates fatty acid and cholesterol synthesis by phosphorylating acetyl-CoA carboxylase (ACACA and ACACB) and hormone-sensitive lipase (LIPE) enzymes, respectively. Regulates insulin-signaling and glycolysis by phosphorylating IRS1, PFKFB2 and PFKFB3. AMPK stimulates glucose uptake in muscle by increasing the translocation of the glucose transporter SLC2A4/GLUT4 to the plasma membrane, possibly by mediating phosphorylation of TBC1D4/AS160. Regulates transcription and chromatin structure by phosphorylating transcription regulators involved in energy metabolism such as CRTC2/TORC2, FOXO3, histone H2B, HDAC5, MEF2C, MLXIPL/ChREBP, EP300, HNF4A, p53/TP53, SREBF1, SREBF2 and PPARGC1A. Acts as a key regulator of glucose homeostasis in liver by phosphorylating CRTC2/TORC2, leading to CRTC2/TORC2 sequestration in the cytoplasm. In response to stress, phosphorylates 'Ser-36' of histone H2B (H2BS36ph), leading to promote transcription. Acts as a key regulator of cell growth and proliferation by phosphorylating TSC2, RPTOR and ATG1: in response to nutrient limitation, negatively regulates the mTORC1 complex by phosphorylating RPTOR component of the mTORC1 complex and by phosphorylating and activating TSC2. In response to nutrient limitation, promotes autophagy by phosphorylating and activating ULK1. AMPK also acts as a regulator of circadian rhythm by mediating phosphorylation of CRY1, leading to destabilize it May regulate the Wnt signaling pathway by phosphorylating CTNNB1, leading to stabilize it. Also has tau-protein kinase activity: in response to amyloid beta A4 protein (APP) exposure, activated by CAMKK2, leading to phosphorylation of MAPT/TAU; however the relevance of such data remains unclear in vivo. Also phosphorylates CFTR, EEF2K, KLC1, NOS3 and SLC12A1
Cellular Location
Cytoplasm. Nucleus. Note=In response to stress, recruited by p53/TP53 to specific promoters

AMPK1 Antibody (N-term) - Related products

AP7260a: AMPK alpha (PRKAA1) Antibody (S487)

AP7260b: AMPK alpha (PRKAA1) Antibody (N-term)

AM1858a: PRKAA1 Antibody (Ascites)

AM1858b: PRKAA1 Antibody

AP3700a: Phospho-PRKAA1 -S487 Antibody

AP7201a: AMPK alpha 1 Antibody (C-term)

AP7255a: AMPK1 Antibody (N-term)

AP7260c: PRKAA1 Antibody

AP7260d: PRKAA1-S487 Antibody

RI14207: PRKAA1 predesign siRNA

DC07754: Human PRKAA1 cDNA Clone

BP3700a: Phospho-PRKAA1-S487 Antibody Blocking Peptide

BP7201a: AMPK alpha 1 Antibody (C-term) Blocking Peptide

BP7255a: AMPK1 Antibody (N-term) Blocking Peptide

BP7260a: PRKAA1 Antibody (S487) Blocking Peptide

AT3426a: PRKAA1 Antibody (monoclonal) (M03)

AJ1037a: AMPK alpha 1 Antibody

AJ1040a: AMPK-alpha1 Antibody Phospho-pS487

AJ1765a: TFF1 Antibody

AMPK1 Antibody (N-term) - Application data

  • Western blot analysis of anti-AMPK1 Antibody (N-term)(Cat.#AP7255a) in Hela cell line lysates (35ug/lane). AMPK1 (arrow) was detected using the purified Pab.

  • Formalin-fixed and paraffin-embedded human breast carcionma reacted with AMPK1 Antibody (N-term), which was peroxidase-conjugated to the secondary antibody, followed by DAB staining. This data demonstrates the use of this antibody for immunohistochemistry; clinical relevance has not been evaluated.

  • Flow cytometric analysis of MDA-231 cells using AMPK1 Antibody (N-term)(bottom histogram) compared to a negative control cell (top histogram). FITC-conjugated goat-anti-rabbit secondary antibodies were used for the analysis.

AMPK1 Antibody (N-term) - Research Areas

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BACKGROUND

AMPK1 belongs to the ser/thr protein kinase family. It is the catalytic subunit of the 5'-prime-AMP-activated protein kinase (AMPK). AMPK is a cellular energy sensor conserved in all eukaryotic cells. The kinase activity of AMPK is activated by the stimuli that increase the cellular AMP/ATP ratio. AMPK regulates the activities of a number of key metabolic enzymes through phosphorylation. It protects cells from stresses that cause ATP depletion by switching off ATP-consuming biosynthetic pathways.

REFERENCES

Stapleton D., Mitchelhill K.I.J. Biol. Chem. 271:611-614(1996) Lizcano J.M., Goeransson O.EMBO J. 23:833-843(2004) Hawley S.A., Pan D.A.Cell Metab. 2:9-19(2005)