Rabbit Monoclonal ACSL1 antibody. Carrier free. Suitable for WB and reacts with Mouse, Rat, Human samples. Immunogen corresponding to Recombinant Fragment Protein within Human ACSL1.
pH: 7.4
Constituents: 100% PBS
WB | |
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Human | Tested |
Mouse | Tested |
Rat | Tested |
Species | Dilution info | Notes |
---|---|---|
Species Mouse | Dilution info 1/500 - 1/3000 | Notes - |
Species Rat | Dilution info 1/500 - 1/3000 | Notes - |
Species Human | Dilution info 1/500 - 1/3000 | Notes - |
Catalyzes the conversion of long-chain fatty acids to their active form acyl-CoAs for both synthesis of cellular lipids, and degradation via beta-oxidation (PubMed:21242590, PubMed:22633490, PubMed:24269233). Preferentially uses palmitoleate, oleate and linoleate (PubMed:24269233). Preferentially activates arachidonate than epoxyeicosatrienoic acids (EETs) or hydroxyeicosatrienoic acids (HETEs) (By similarity).
FACL1, FACL2, LACS, LACS1, LACS2, ACSL1, Long-chain-fatty-acid--CoA ligase 1, Acyl-CoA synthetase 1, Arachidonate--CoA ligase, Long-chain acyl-CoA synthetase 1, Long-chain acyl-CoA synthetase 2, Long-chain fatty acid-CoA ligase 2, Palmitoyl-CoA ligase 1, Palmitoyl-CoA ligase 2, Phytanate--CoA ligase, ACS1, LACS 1, LACS 2
Rabbit Monoclonal ACSL1 antibody. Carrier free. Suitable for WB and reacts with Mouse, Rat, Human samples. Immunogen corresponding to Recombinant Fragment Protein within Human ACSL1.
pH: 7.4
Constituents: 100% PBS
This product is a recombinant monoclonal antibody, which offers several advantages including:
For more information, read more on recombinant antibodies.
Our carrier-free antibodies are typically supplied in a PBS-only formulation, purified and free of BSA, sodium azide and glycerol. The carrier-free buffer and high concentration allow for increased conjugation efficiency.
This conjugation-ready format is designed for use with fluorochromes, metal isotopes, oligonucleotides, and enzymes, which makes them ideal for antibody labelling, functional and cell-based assays, flow-based assays (e.g. mass cytometry) and Multiplex Imaging applications.
Use our conjugation kits for antibody conjugates that are ready-to-use in as little as 20 minutes with 1 minute hands-on-time and 100% antibody recovery: available for fluorescent dyes, HRP, biotin and gold.
The enzyme ACSL1 known as Acyl-CoA synthetase long-chain family member 1 plays an important role in lipid metabolism by converting free long-chain fatty acids into fatty acyl-CoA esters. This reaction is essential for the β-oxidation and synthesis of complex lipids. ACSL1 has an approximate mass of 78 kDa and is expressed in tissues with high metabolic activity including the liver heart and adipose tissue. The enzyme functions by regulating the cellular levels of fatty acids and their derivatives significantly impacting energy homeostasis.
ACSL1 affects energy production and lipid storage by activating fatty acids making them substrates for metabolic processes. It is not only an independent enzyme but also works with other lipid-metabolizing enzymes to form complexes. This involvement in the dynamic regulation of lipid utilization and storage influences cellular energy balance and metabolic flexibility. ACSL1 also associates with peroxisomes contributing to its functions in lipid metabolism and organelle integrity.
ACSL1 holds a significant position in the fatty acid metabolism and PPAR signaling pathways. It interacts with enzymes like CPT1 important for transporting activated fatty acids into mitochondria for β-oxidation highlighting its integral role in energy harvesting from lipids. This participation in essential metabolic pathways demonstrates ACSL1's contribution to maintaining cellular energy and lipid balance.
ACSL1 links to metabolic disorders such as non-alcoholic fatty liver disease (NAFLD) and cardiovascular disease. Overexpression or aberrant function of ACSL1 can disrupt normal lipid homeostasis contributing to abnormal lipid accumulation and metabolic dysregulation. The enzyme also associates with SREBP-1 a regulator of lipid synthesis indicating its involvement in lipid-related disorders. Researching ACSL1 helps understand its impact on lipid metabolism-related pathologies.
We have tested this species and application combination and it works. It is covered by our product promise.
We have not tested this specific species and application combination in-house, but expect it will work. It is covered by our product promise.
This species and application combination has not been tested, but we predict it will work based on strong homology. However, this combination is not covered by our product promise.
We do not recommend this combination. It is not covered by our product promise.
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Terms & Conditions.
Samples were seperated by 7.5% SDS-PAGE. Corresponding RNA expression data for the same cell lines are based on Human Protein Atlas program.
All lanes: Western blot - Anti-ACSL1 antibody [HL1530] (ab308162) at 1/2000 dilution
Lane 1: A431 whole cell extracts at 30 µg
Lane 2: HeLa whole cell extracts at 30 µg
Lane 3: HepG2 whole cell extracts at 30 µg
All lanes: HRP-conjugated anti-rabbit IgG antibody
Predicted band size: 77 kDa
Samples were seperated by 7.5% SDS-PAGE.
All lanes: Western blot - Anti-ACSL1 antibody [HL1530] (ab308162) at 1/2000 dilution
All lanes: NIH-3T3 Whole cell extract at 30 µg
All lanes: HRP-conjugated anti-rabbit IgG antibody
Predicted band size: 77 kDa
Separated by 7.5% SDS-PAGE.
All lanes: Western blot - Anti-ACSL1 antibody [HL1530] (ab308162) at 1/20000 dilution
All lanes: Rat liver tissue lysate at 50 µg
All lanes: HRP-conjugated anti-rabbit IgG antibody
Predicted band size: 78 kDa
All lanes: Western blot - Anti-ACSL1 antibody [HL1530] (ab308162) at 1/20000 dilution
Lane 1: Mouse liver tissue lysate at 50 µg
Lane 2: Mouse spleen tissue lysate at 50 µg
All lanes: HRP-conjugated anti-rabbit IgG antibody
Predicted band size: 78 kDa
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