
Thermo Fisher Scientific ATG9A Monoclonal Antibody (14F2 8B1), Alexa Fluor 488
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Applications
Tested Dilution
Publications
Immunocytochemistry (ICC/IF)
5 µg/mL
Product Specifications
Species Reactivity
Human, Mouse, Rat
Host/Isotype
Armenian hamster / IgG
Class
Monoclonal
Type
Antibody
Clone
14F2 8B1
Immunogen
peptide sequence HPEPVPEEGSEDELPPQVHK of human ATG9A C-terminus if (typeof window.$mangular === undefined
|| !window.$mangular) { window.$mangular = {}; } $mangular.antigenJson = \[{
targetFamily:
ATG9A,
uniProtId:
Q7Z3C6-1,
ncbiNodeId:
9606,
antigenRange:
819-839,
antigenLength:
839,
antigenImageFileName:
MA1-149-A488_ATG9A_Q7Z3C6-1_Armenian_hamster.svg,
antigenImageFileNamePDP:
MA1-149-A488_ATG9A_Q7Z3C6-1_Armenian_hamster_PDP.jpeg,
sortOrder:
1}\]
; $mangular.isB2BCMGT = false
; $mangular.isEpitopesModalImageMultiSizeEnabled = true
;
View immunogen .st0{fill:#FFFFFF;} .st1{fill:#1E8AE7;}
Conjugate
Alexa Fluor™ 488 Alexa Fluor™ 488 Alexa Fluor™ 488
View additional formats
Excitation/Emission Max
499/520 nm View spectra
Form
Liquid
Concentration
1.0 mg/mL
Purification
Protein A
Storage buffer
PBS with 1.0mg/mL BSA
Contains
0.05% sodium azide
Storage conditions
4° C, store in dark, DO NOT FREEZE!
Shipping conditions
Ambient (domestic); Dry ice (international)
RRID
AB_2723938
Product Specific Information
MA1-149A-488 was produced in Armenian hamster and detects ATG9 in human, rat and mouse samples. In Immunofluorescence applications, MA1-149A488 shows accumulation and redistribution of ATG9 in response to starvation-induced autophagosome assembly.
Target Information
Macroautophagy is the major inducible pathway for the general turnover of cytoplasmic constituents in eukaryotic cells, it is also responsible for the degradation of active cytoplasmic enzymes and organelles during nutrient starvation. Macroautophagy involves the formation of double-membrane bound autophagosomes which enclose the cytoplasmic constituent targeted for degradation in a membrane bound structure, which then fuse with the lysosome (or vacuole) releasing a single-membrane bound autophagic bodies which are then degraded within the lysosome (or vacuole). Apg9 plays a direct role in the formation of the cytoplasm to vacuole targeting and autophagic vesicles, possibly serving as a marker for a specialized compartment essential for these vesicle-mediated alternative targeting pathways.
For Research Use Only. Not for use in diagnostic procedures. Not for resale without express authorization.
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