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THEM2 Antibody

     
  • 1 - THEM2 Antibody ASC10940
    Western blot analysis of THEM2 in HepG2 cell lysate with THEM2 antibody at 1 µg/mL in (A) the absence and (B) the presence of blocking peptide.
  • 2 - THEM2 Antibody ASC10940
    Immunohistochemistry of THEM2 in human liver tissue with THEM2 antibody at 2.5 µg/mL.
  • 3 - THEM2 Antibody ASC10940
    Immunofluorescence of THEM2 in human liver tissue with THEM2 antibody at 20 µg/mL.
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Product Information
Application
  • Applications Legend:
  • E=ELISA
  • WB=Western Blotting
  • IHC=Immunohistochemistry
  • IHC-P=Immunohistochemistry (Paraffin)
  • IP=Immunoprecipitation
  • IF=Immunofluorescence
  • IC=Immunochemistry
  • ICC=Immunocytochemistry
  • FC=Flow Cytometry
  • DB=Dot Blot
WB, IF, E, IHC-P
Primary Accession Q9NPJ3
Other Accession NP_060943, 8923812
Reactivity Human, Mouse, Rat
Host Rabbit
Clonality Polyclonal
Isotype IgG
Calculated MW 14960 Da
Concentration (mg/ml) 1 mg/mL
Conjugate Unconjugated
Application Notes THEM2 antibody can be used for detection of THEM2 by Western blot at 1 µg/mL. Antibody can also be used for immunohistochemistry starting at 2.5 µg/mL. For immunofluorescence start at 20 µg/mL.
Additional Information
Gene ID 55856
Other Names Acyl-coenzyme A thioesterase 13, Acyl-CoA thioesterase 13, 3.1.2.-, Thioesterase superfamily member 2, Acyl-coenzyme A thioesterase 13, N-terminally processed, ACOT13, THEM2
Target/Specificity ACOT13;
Reconstitution & Storage THEM2 antibody can be stored at 4℃ for three months and -20℃, stable for up to one year. As with all antibodies care should be taken to avoid repeated freeze thaw cycles. Antibodies should not be exposed to prolonged high temperatures.
PrecautionsTHEM2 Antibody is for research use only and not for use in diagnostic or therapeutic procedures.
Protein Information
Name ACOT13 (HGNC:20999)
Synonyms THEM2
Function Catalyzes the hydrolysis of acyl-CoAs into free fatty acids and coenzyme A (CoASH), regulating their respective intracellular levels (PubMed:16934754, PubMed:19170545). Has acyl-CoA thioesterase activity towards medium (C12) and long-chain (C18) fatty acyl-CoA substrates (By similarity) (PubMed:16934754, PubMed:19170545). Can also hydrolyze 3-hydroxyphenylacetyl-CoA and 3,4-dihydroxyphenylacetyl-CoA (in vitro) (By similarity) (PubMed:16934754, PubMed:19170545). May play a role in controlling adaptive thermogenesis (By similarity).
Cellular Location Cytoplasm, cytosol {ECO:0000250|UniProtKB:Q9CQR4}. Mitochondrion {ECO:0000250|UniProtKB:Q9CQR4}. Nucleus {ECO:0000250|UniProtKB:Q9CQR4} Cytoplasm, cytoskeleton, spindle {ECO:0000250|UniProtKB:Q9CQR4} Note=During interphase, found both in the nucleus and in the cytoplasm At mitosis, localizes to the spindle. Colocalizes with tubulin {ECO:0000250|UniProtKB:Q9CQR4}
Research Areas

For Research Use Only. Not For Use In Diagnostic Procedures.

BACKGROUND

THEM2 Antibody: THEM2, also known as ACOT13, belongs to the hotdog-fold superfamily and possesses thioesterase activity, with greater activity observed with longer chain acyl-CoAs such as myristoyl- and palmitoyl-CoA. THEM2 is highly expressed in several tissues such as heart, kidney, liver and brain and has been shown to be co-localized with beta-tubulin on microtubules. THEM2 interacts with StarD, a protein that plays a key role in fatty acid metabolism, and the addition of StarD to THEM2 increased its catalytic activity, suggesting that THEM2 plays a significant role in the metabolism of fatty acids. At least two isoforms of THEM2 are known to exist.

REFERENCES

Cheng Z, Song F, Shan X, et al. Crystal structure of human thioesterase superfamily member 2. Biochem. Biophys. Res. Commun.2006; 349:172-7.
Wei J, Kang HW, and Cohen DE. Thioesterase superfamily member 2 (Them2)/acyl-CoA thioesterase 13 (Acot13): a homotetrameric hotdog fold thioesterase with selectivity for long-chain fatty acyl-CoAs. Biochem. J.2009; 421:311-22.
Cheng Z, Bao S, Shan X, et al. Human thioesterase superfamily member 2 (hTHEM2) is co-localized with beta-tubulin onto the microtubule. Biochem. Biophys. Res. Commun.2006; 350:850-3.
Scappa EF, Pocai A, Wu MK, et al. Regulation of energy substrate utilization and hepatic insulin sensitivity by phosphatidylcholine transfer protein/StarD. FASEB J.2008; 22:2579-90.

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