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Anti-Apg3 antibody

SKU Product Brand Unit Availability Price Quantity  
AB-06-0332
Anti-Apg3 antibody
Erpan Tech In stock

Specifications        

Product Cat#: AB-06-0332
Product type: Primary antibody
Antigen: Apg3
Immunogen: Recombinant protein with human Apg3 aa 50-250.
Species immunized: Rabbit
Isotype: IgG
Applications: Western Blot (1:500); Immunohistochemistry (1:100-1:200)
Reactivity: Mouse, Human
Clonality (clone number): Polyclonal
Form: Liquid
Buffer: Tris-HCl buffer (pH7.4), 0.5% BSA, 50% glycerol, 0.05% NaN3.
Concentration: 1 mg/ml
Purity: Protein A/G affinity purified
Storage: Aliquot and freeze at -20℃. Avoid multiple freeze/thaw cycles.
Alternative names: 2610016C12Rik antibody
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APG3 antibody
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APG3 like antibody
APG3, S. cerevisiae, homolog of antibody
APG3-like antibody
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Apg3p antibody
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ATG3 autophagy related 3 homolog antibody
ATG3 autophagy related 3 homolog (S. cerevisiae) antibody
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Autophagy 3, S. cerevisiae, homolog of antibody
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Autophagy related 3 antibody
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HApg3 antibody
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OTTHUMP00000214547 antibody
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Ubiquitin-like-conjugating enzyme ATG3 antibody
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Target information

E2 conjugating enzyme required for the cytoplasm to vacuole transport (Cvt), autophagy, and mitochondrial homeostasis. Responsible for the E2-like covalent binding of phosphatidylethanolamine to the C-terminal Gly of ATG8-like proteins (GABARAP, GABARAPL1, GABARAPL2 or MAP1LC3A). The ATG12-ATG5 conjugate plays a role of an E3 and promotes the transfer of ATG8-like proteins from ATG3 to phosphatidylethanolamine (PE). This step is required for the membrane association of ATG8-like proteins. The formation of the ATG8-phosphatidylethanolamine conjugates is essential for autophagy and for the cytoplasm to vacuole transport (Cvt). Preferred substrate is MAP1LC3A. Also acts as an autocatalytic E2-like enzyme, catalyzing the conjugation of ATG12 to itself, ATG12 conjugation to ATG3 playing a role in mitochondrial homeostasis but not in autophagy. ATG7 (E1-like enzyme) facilitates this reaction by forming an E1-E2 complex with ATG3. Promotes primary ciliogenesis by removing OFD1 from centriolar satellites via the autophagic pathway.

Provider

Erpantech Laboratory

download

MSDS-AB-06-0332.pdf (204 downloads )