Recombinant Anti-ACHE Vesicular Antibody, EV Displayed (VS-0425-YC444) (CAT#: VS-0425-YC444)

The Recombinant Anti-ACHE Vesicular Antibody, EV Displayed (VS-0425-YC444) is an antibody-displaying extracellular vesicle (Ab-EV). The product combines the benefits of both extracellular vesicle (EV) and antibody (Ab) which can guide the decorated EVs to ACHE-expressed cells or tissues. The ACHE is acetylcholinesterase, terminating cholinergic signaling and influencing conditions linked to synapse function and blood group antigen.

Specific Inquiry
  • Gene Expression
  • Datasheet
  • MSDS
  • COA
Subcellular Location
RNA Expression

Recombinant Antibody

  • Application
  • ELISA, FC, Cell-uptake
  • Product Type
  • Ab-Fc-EVs
  • Antibody Quantification (Ab/EV)
  • ~100 Ab/EV
  • Target
  • ACHE
  • Host Animal
  • Human
  • Antibody Isotype
  • IgG
  • Species Reactivity
  • Human
  • Expression Cell
  • Mammalian cell

Engineered EVs

  • EV-sorting domain
  • CD63
  • Fc-binding domain
  • z domain
  • EV Size
  • 30~150 nm
  • Producing Cell
  • HEK293F
  • Isolation Method
  • Gradient centrifugation
  • Purification
  • qEV size exclusion chromatography
  • Binding Affinity
  • Kd = 0.85 µg/mL
  • Concentration
  • 1 x 10¹⁰
  • Size
  • 1 mL
  • Buffer
  • PBS
  • Storage
  • Store at -80°C for 12 months

Target

  • Full Name
  • Acetylcholinesterase (Cartwright blood group)
  • Biological Process
  • Neurotransmitter degradation
  • Molecular Function
  • Blood group antigen, Hydrolase, Serine esterase
  • Cellular Localization
  • Golgi apparatus, Vesicles
  • Introduction
  • Acetylcholinesterase hydrolyzes the neurotransmitter, acetylcholine at neuromuscular junctions and brain cholinergic synapses, and thus terminates signal transmission. It is also found on the red blood cell membranes, where it constitutes the Yt blood group antigen. Acetylcholinesterase exists in multiple molecular forms which possess similar catalytic properties, but differ in their oligomeric assembly and mode of cell attachment to the cell surface. It is encoded by the single ACHE gene, and the structural diversity in the gene products arises from alternative mRNA splicing, and post-translational associations of catalytic and structural subunits. The major form of acetylcholinesterase found in brain, muscle and other tissues is the hydrophilic species, which forms disulfide-linked oligomers with collagenous, or lipid-containing structural subunits. The other, alternatively spliced form, expressed primarily in the erythroid tissues, differs at the C-terminal end, and contains a cleavable hydrophobic peptide with a GPI-anchor site. It associates with the membranes through the phosphoinositide (PI) moieties added post-translationally.
  • Alternative Names
  • YT

Downloads

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For Research Use Only. Not For Clinical Use.

For research use only. Not intended for any clinical use. No products from Creative Biolabs may be resold, modified for resale or used to manufacture commercial products without prior written approval from Creative Biolabs.

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