Product: ACSS1 Antibody
Catalog: DF3727
Description: Rabbit polyclonal antibody to ACSS1
Application: WB IHC IF/ICC
Reactivity: Human, Mouse
Prediction: Pig, Bovine, Horse, Sheep, Rabbit, Dog, Chicken
Mol.Wt.: 75 KD; 75kD(Calculated).
Uniprot: Q9NUB1
RRID: AB_2836091

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 100ul $280 In stock
 200ul $350 In stock

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Product Info

Source:
Rabbit
Application:
WB 1:500-1:1000, IHC 1:50-1:200, IF/ICC 1:100-1:500
*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.

Reactivity:
Human,Mouse
Prediction:
Pig(100%), Bovine(100%), Horse(100%), Sheep(100%), Rabbit(100%), Dog(100%), Chicken(89%)
Clonality:
Polyclonal
Specificity:
ACSS1 Antibody detects endogenous levels of total ACSS1.
RRID:
AB_2836091
Cite Format: Affinity Biosciences Cat# DF3727, RRID:AB_2836091.
Conjugate:
Unconjugated.
Purification:
The antiserum was purified by peptide affinity chromatography using SulfoLink™ Coupling Resin (Thermo Fisher Scientific).
Storage:
Rabbit IgG in phosphate buffered saline , pH 7.4, 150mM NaCl, 0.02% sodium azide and 50% glycerol. Store at -20 °C. Stable for 12 months from date of receipt.
Alias:

Fold/Unfold

ACAS2L; AceCS2; AceCS2L; Acetate CoA ligase 2; Acetate--CoA ligase 2; Acetyl CoA synthetase 2; Acetyl Coenzyme A synthetase 2 (AMP forming) like; Acetyl coenzyme A synthetase 2 like, mitochondrial; Acetyl-CoA synthetase 2; Acetyl-coenzyme A synthetase 2-like, mitochondrial; ACS2L_HUMAN; Acss1; Acyl CoA synthetase short chain family member 1; Acyl-CoA synthetase short-chain family member 1; FLJ45659; KIAA1846; MGC33843;

Immunogens

Immunogen:
Uniprot:
Gene(ID):
Sequence:
MAARTLGRGVGRLLGSLRGLSGQPARPPCGVSAPRRAASGPSGSAPAVAAAAAQPGSYPALSAQAAREPAAFWGPLARDTLVWDTPYHTVWDCDFSTGKIGWFLGGQLNVSVNCLDQHVRKSPESVALIWERDEPGTEVRITYRELLETTCRLANTLKRHGVHRGDRVAIYMPVSPLAVAAMLACARIGAVHTVIFAGFSAESLAGRINDAKCKVVITFNQGLRGGRVVELKKIVDEAVKHCPTVQHVLVAHRTDNKVHMGDLDVPLEQEMAKEDPVCAPESMGSEDMLFMLYTSGSTGMPKGIVHTQAGYLLYAALTHKLVFDHQPGDIFGCVADIGWITGHSYVVYGPLCNGATSVLFESTPVYPNAGRYWETVERLKINQFYGAPTAVRLLLKYGDAWVKKYDRSSLRTLGSVGEPINCEAWEWLHRVVGDSRCTLVDTWWQTETGGICIAPRPSEEGAEILPAMAMRPFFGIVPVLMDEKGSVVEGSNVSGALCISQAWPGMARTIYGDHQRFVDAYFKAYPGYYFTGDGAYRTEGGYYQITGRMDDVINISGHRLGTAEIEDAIADHPAVPESAVIGYPHDIKGEAAFAFIVVKDSAGDSDVVVQELKSMVATKIAKYAVPDEILVVKRLPKTRSGKVMRRLLRKIITSEAQELGDTTTLEDPSIIAEILSVYQKCKDKQAAAK

Predictions

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.

Species
Results
Score
Pig
100
Horse
100
Bovine
100
Sheep
100
Dog
100
Rabbit
100
Chicken
89
Xenopus
78
Zebrafish
0
Model Confidence:
High(score>80) Medium(80>score>50) Low(score<50) No confidence

PTMs - Q9NUB1 As Substrate

Site PTM Type Enzyme
S16 Phosphorylation
S32 Phosphorylation
S285 Phosphorylation
K396 Acetylation
Y521 Phosphorylation
K523 Ubiquitination
Y542 Phosphorylation
K633 Ubiquitination
K642 Acetylation
Y678 Phosphorylation

Research Backgrounds

Function:

Catalyzes the synthesis of acetyl-CoA from short-chain fatty acids. Acetate is the preferred substrate. Can also utilize propionate with a much lower affinity (By similarity). Provides acetyl-CoA that is utilized mainly for oxidation under ketogenic conditions (By similarity). Involved in thermogenesis under ketogenic conditions, using acetate as a vital fuel when carbohydrate availability is insufficient (By similarity).

PTMs:

Reversibly acetylated on Lys-642. The acetyl-CoA synthase activity is inhibited by acetylation and activated by deacetylation mediated by the deacetylase SIRT3.

Subcellular Location:

Mitochondrion matrix.

Extracellular region or secreted Cytosol Plasma membrane Cytoskeleton Lysosome Endosome Peroxisome ER Golgi apparatus Nucleus Mitochondrion Manual annotation Automatic computational assertionSubcellular location
Subunit Structure:

Interacts with SIRT3.

Family&Domains:

Belongs to the ATP-dependent AMP-binding enzyme family.

Research Fields

· Metabolism > Carbohydrate metabolism > Glycolysis / Gluconeogenesis.

· Metabolism > Carbohydrate metabolism > Pyruvate metabolism.

· Metabolism > Carbohydrate metabolism > Propanoate metabolism.

· Metabolism > Global and overview maps > Metabolic pathways.

· Metabolism > Global and overview maps > Carbon metabolism.

References

1). Emodin Attenuates Lipopolysaccharide-Induced Acute Liver Injury via Inhibiting the TLR4 Signaling Pathway in vitro and in vivo. Frontiers in Pharmacology (PubMed: 30186181) [IF=5.6]

2). Single-walled carbon nanohorn aggregates promotes mitochondrial dysfunction-induced apoptosis in hepatoblastoma cells by targeting SIRT3. INTERNATIONAL JOURNAL OF ONCOLOGY (PubMed: 29956732) [IF=5.2]

Application: WB    Species: mouse    Sample: L02 cells

Figure 3.| Treatment with SWNHs alters the expression of mitochondrial apoptotic pathway-associated proteins in vitro. (A) HepG2 and (B) L02 cells were incubated with different concentrations of SWNHs in 6-well plates for 48 h. The changes in the expression and the relative quantification of proteins in (C) HepG2 cells or (D) L02 cells were identified by western blotting. SW0, SW10, SW20, SW30, SW40 and SW50 correspond to the concentrations of SWNHs: 0, 0.21, 0.42, 0.64, 0.85 and 0.96 µg/cm2, respectively. Data are presented as the mean ± standard deviation (n=3). *P<0.05 compared with the SW0 group. AceCS2, acyl-CoA synthetase short chain family member 1; SCNN1A, sodium channel epithelial 1α subunit; SIRT3, sirtuin 3; SWNH, single-walled carbon nanohorn; VDAC1, voltage-dependent anion channel 1.

3). Titanium dioxide nanoparticles induce mitochondria-associated apoptosis in HepG2 cells. RSC Advances (PubMed: 35548213) [IF=3.9]

Restrictive clause

 

Affinity Biosciences tests all products strictly. Citations are provided as a resource for additional applications that have not been validated by Affinity Biosciences. Please choose the appropriate format for each application and consult Materials and Methods sections for additional details about the use of any product in these publications.

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