Date published: 2026-8-1

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BACE Antibody (61-3E7): sc-33711

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Datasheets
  • BACE Antibody (61-3E7) is a mouse monoclonal IgG1 κ BACE antibody, cited in 38 publications, provided at 200 µg/ml
  • raised against a C-terminal synthetic BACE peptide of human origin
  • BACE Antibody (61-3E7) is recommended for detection of BACE of mouse, rat and human origin by WB, IP, IF and IHC(P); non cross-reactive with BACE2
  • Anti-BACE Antibody (61-3E7) is available conjugated to agarose for IP; HRP for WB, IHC(P) and ELISA; and to either phycoerythrin or FITC for IF, IHC(P) and FCM
  • also available conjugated to Alexa Fluor® 488, Alexa Fluor® 546, Alexa Fluor® 594 or Alexa Fluor® 647 for WB (RGB), IF, IHC(P) and FCM, and for use with RGB fluorescent imaging systems, such as iBright™ FL1000, FluorChem™, Typhoon, Azure and other comparable systems
  • also available conjugated to Alexa Fluor® 680 or Alexa Fluor® 790 for WB (NIR), IF and FCM; for use with Near-Infrared (NIR) detection systems, such as LI-COR®Odyssey®, iBright™ FL1000, FluorChem™, Typhoon, Azure and other comparable systems
  • m-IgG Fc BP-HRP and m-IgGκ BP-HRP are the preferred secondary detection reagents for BACE Antibody (61-3E7) for WB and IHC(P) applications. These reagents are now offered in bundles with BACE Antibody (61-3E7) (see ordering information below).
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BACE Antibody (61-3E7) is a mouse monoclonal IgG1 kappa light chain antibody that detects BACE protein of mouse, rat, and human origin by western blotting (WB), immunoprecipitation (IP), immunofluorescence (IF), and immunohistochemistry. Anti-BACE antibody (61-3E7) is available in both non-conjugated and various conjugated forms, including agarose, horseradish peroxidase (HRP), phycoerythrin (PE), fluorescein isothiocyanate (FITC), and multiple Alexa Fluor® conjugates. BACE protein, also known as Beta-Site APP Cleaving Enzyme 1, plays a crucial role in the pathogenesis of Alzheimer′s disease by cleaving amyloid precursor protein (APP) to produce amyloid β-peptide (Aβ), a major component of amyloid plaques found in the brains of Alzheimer′s patients. The cleavage of APP by BACE is a critical step in the formation of these plaques, which are associated with neurodegeneration and cognitive decline. BACE is predominantly localized within the Golgi apparatus and endosomes, which is significant as BACE activity is regulated by the cellular environment and trafficking pathways. Understanding the localization and function of BACE is essential for developing therapeutic strategies aimed at modulating BACE activity to prevent or treat Alzheimer′s disease. BACE and related protein, Asp1, are widely expressed in human tissues, with highest expression levels found in the pancreas, highlighting BACE importance in both neurological and metabolic processes.

For Research Use Only. Not Intended for Diagnostic or Therapeutic Use.

Alexa Fluor® is a trademark of Molecular Probes Inc., OR., USA

LI-COR® and Odyssey® are registered trademarks of LI-COR Biosciences

BACE Antibody (61-3E7) References:

  1. Beta-secretase cleavage of Alzheimer's amyloid precursor protein by the transmembrane aspartic protease BACE.  |  Vassar, R., et al. 1999. Science. 286: 735-41. PMID: 10531052
  2. Membrane-anchored aspartyl protease with Alzheimer's disease beta-secretase activity.  |  Yan, R., et al. 1999. Nature. 402: 533-7. PMID: 10591213
  3. Identification of a novel aspartic protease (Asp 2) as beta-secretase.  |  Hussain, I., et al. 1999. Mol Cell Neurosci. 14: 419-27. PMID: 10656250
  4. A pathogenic mutation for probable Alzheimer's disease in the APP gene at the N-terminus of beta-amyloid.  |  Mullan, M., et al. 1992. Nat Genet. 1: 345-7. PMID: 1302033
  5. Human BACE forms dimers and colocalizes with APP.  |  Schmechel, A., et al. 2004. J Biol Chem. 279: 39710-7. PMID: 15247262
  6. Apo and inhibitor complex structures of BACE (beta-secretase).  |  Patel, S., et al. 2004. J Mol Biol. 343: 407-16. PMID: 15451669
  7. Demonstration of BACE (beta-secretase) phosphorylation and its interaction with GGA1 in cells by fluorescence-lifetime imaging microscopy.  |  von Arnim, CA., et al. 2004. J Cell Sci. 117: 5437-45. PMID: 15466887
  8. BACE overexpression alters the subcellular processing of APP and inhibits Abeta deposition in vivo.  |  Lee, EB., et al. 2005. J Cell Biol. 168: 291-302. PMID: 15642747
  9. Segregation of a missense mutation in the amyloid precursor protein gene with familial Alzheimer's disease.  |  Goate, A., et al. 1991. Nature. 349: 704-6. PMID: 1671712
  10. Application of fragment-based NMR screening, X-ray crystallography, structure-based design, and focused chemical library design to identify novel microM leads for the development of nM BACE-1 (beta-site APP cleaving enzyme 1) inhibitors.  |  Wang, YS., et al. 2010. J Med Chem. 53: 942-50. PMID: 20043700
  11. The precursor of Alzheimer's disease amyloid A4 protein resembles a cell-surface receptor.  |  Kang, J., et al. Nature. 325: 733-6. PMID: 2881207
  12. The cell biology of beta-amyloid precursor protein and presenilin in Alzheimer's disease.  |  Selkoe, DJ. 1998. Trends Cell Biol. 8: 447-53. PMID: 9854312

Ordering Information

Product NameCatalog #UNITPriceQtyFAVORITES

BACE Antibody (61-3E7)

sc-33711
200 µg/ml
$322.00

BACE Antibody (61-3E7): m-IgG Fc BP-HRP Bundle

sc-553003
200 µg Ab; 10 µg BP
$361.00

BACE Antibody (61-3E7): m-IgGκ BP-HRP Bundle

sc-553002
200 µg Ab; 40 µg BP
$361.00

BACE Antibody (61-3E7) AC

sc-33711 AC
500 µg/ml, 25% agarose
$424.00

BACE Antibody (61-3E7) HRP

sc-33711 HRP
200 µg/ml
$322.00

BACE Antibody (61-3E7) FITC

sc-33711 FITC
200 µg/ml
$336.00

BACE Antibody (61-3E7) PE

sc-33711 PE
200 µg/ml
$349.00

BACE Antibody (61-3E7) Alexa Fluor® 488

sc-33711 AF488
200 µg/ml
$364.00

BACE Antibody (61-3E7) Alexa Fluor® 546

sc-33711 AF546
200 µg/ml
$364.00

BACE Antibody (61-3E7) Alexa Fluor® 594

sc-33711 AF594
200 µg/ml
$364.00

BACE Antibody (61-3E7) Alexa Fluor® 647

sc-33711 AF647
200 µg/ml
$364.00

BACE Antibody (61-3E7) Alexa Fluor® 680

sc-33711 AF680
200 µg/ml
$364.00

BACE Antibody (61-3E7) Alexa Fluor® 790

sc-33711 AF790
200 µg/ml
$364.00