Anti-Atg4B (Human) mAb

MBL
Product Code: MBL-M134-3
Product Group: Primary Antibodies
Supplier: MBL
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MBL-M134-3100 uL£341.00
Quantity:
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Overview

Host Type: Mouse
Antibody Isotype: IgG1
Antibody Clonality: Monoclonal
Antibody Clone: 9H5
Regulatory Status: RUO
Target Species:
  • Hamster
  • Human
  • Mouse
  • Rat
Application: Western Blot (WB)
Shipping:
4°C
Storage:
-20°C

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Further Information

Applications:
WB - 1 ug/mL (chemiluminescence detection system)
Background:
Autophagy is a process of intracellular bulk degradation in which cytoplasmic components including organelles are sequestered within double-membrane vesicles that deliver the contents to the lysosome/vacuole for degradation. Microtubule-associated protein light chain 3 (LC3) is a homologue of yeast Atg8, an essential component of autophagy. Following synthesis, the C-terminus of LC3 is cleaved by a cysteine protease-Atg4, to produce LC3-I, which is located in cytosolic fraction. LC3-I is activated by the E1-like enzyme Atg7 and forms a Atg7-LC3-I thioester. Atg7-LC3-I is transferred to Atg3 to form Atg3-LC3-I thioester. Atg3 is an E2-like enzyme that catalyzes the conjugation of LC3-I and phosphatidylethanolamine (PE) to form LC3-II. The LC3-II-PE conjugate is essential for binding tightly to autophagosomal membrane.
Concentration:
1 mg/mL
Formulation:
100 ug IgG in 100 ul volume of PBS containing 50% glycerol, pH 7.2. No preservative is contained.
Gene IDs:
Human: 23192 Mouse: 66615 Rat: 316640
Immunogen Translated:
Atg4B human full-length (1-393 a.a.)
Reactivity:
This antibody reacts with Atg4B on Western blotting.
Shelf Life:
1 year
Source:
This antibody was purified from hybridoma (clone 9H5) supernatant using protein A agarose. This hybridoma was established by fusion of mouse myeloma cell P3U1 with C3H mouse lymphocyte immunized with the full-length of human ATG4B (1-393 aa).
Target:
Atg4B

References

1) Yoshimura, K., et al., Autophagy 2, 200-208 (2006) 2) Kumanomidou, T., et al., J. Mol. Biol. 355, 612-618 (2006) 3) Sugawara, K., et al., J. Biol. Chem. 280, 40058-40065 (2005)