Pure recombinant enzyme
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MAP1LC3B/LC3B (human recombinant)

Item No. 25829

Technical Information
Synonyms
  • Autophagy-related Protein LC3B
  • Autophagy-related Ubiquitin-like Modifier LC3B
  • MAP1 Light Chain 3-like Protein 2
  • Microtubule-associated Protein 1 Light Chain 3β
Purity
≥95% estimated by SDS-PAGE
Source
Recombinant N-terminal His-tagged MAP1LC3B/LC3B purified from E. coli
Amino Acids
2-120
MW
16.22 kDa
50 mM HEPES, pH 8.0, with 150 mM sodium chloride, and 10% glycerol
UniProt Accession №
Q9GZQ8
Shipping & Storage Information
Storage
-80°C
Shipping
Dry ice in continental US; may vary elsewhere
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    Product Description

    Microtubule-associated protein 1 light chain 3β (MAP1LC3B), also known as LC3B, is an ortholog of yeast Atg8 that is essential to autophagosome biogenesis.1 LC3B is irreversibly cleaved by the cysteine protease ATG4B (Item No. 25380) to its active form LC3B-I, which contains an exposed C-terminal glycine residue needed for autophagosome formation.2,3 LC3B-I is then conjugated to phosphatidylethanolamine in canonical autophagy by the ATG12-ATG5-ATG16 complex to form LC3B-II, which localizes to the autophagosomal membrane.1,4,5,6 Knockdown of LC3B increases the number of ATG5- and ATG16-positive puncta in HeLa cells, indicating a defect in the maturation of autophagosomes.1 LC3B expression is upregulated in various cancers and has disease-specific implications on progression and prognosis.7,8 In metastatic and castration-resistant human prostate cancer tumor samples, LC3B expression is upregulated and is positively correlated with reduced disease-specific mortality.7 Expression of LC3B is also increased in oral squamous cell carcinomas and is associated with aggressive pathological features and poor prognosis.8

    WARNING This product is not for human or veterinary use.

    References & Product Citations
    Product Description References

    1. Weidberg, H., Shvets, E., Shpilka, T., et alLC3 and GATE-16/GABARAP subfamilies are both essential yet act differently in autophagosome biogenesis. EMBO J. 29(11), 1792-1802 (2010).

    2. Li, M., Hou, Y., Wang, J., et alKinetics comparisons of mammalian Atg4 homologues indicate selective preferences toward diverse Atg8 substrates. The Journal of Biological Chemisty 286(9), 7327-7338 (2011).

    3. Yang, Z., Wilkie-Grantham, R.P., Yanagi, T., et alATG4B (Autophagin-1) phosphorylation modulates autophagy. The Journal of Biological Chemisty 290(44), 26549-26561 (2015).

    4. Kim, J.H., Hong, S.B., Lee, J.K., et alInsights into autophagosome maturation revealed by the structures of ATG5 with its interacting partners. Autophagy 11(1), 75-87 (2015).

    5. Ye, X., Zhou, X.J., and Zhang, H. Exploring the role of autophagy-related gene 5 (ATG5) yields important insights into autophagy in autoimmune/autoinflammatory diseases. Front. Immunol. 9, 2334 (2018).

    6. Mortezavi, A., Salemi, S., Rupp, N.J., et alNegative LC3b immunoreactivity in cancer cells is an independent prognostic predictor of prostate cancer specific death. Oncotarget 8(19), 31765-31774 (2017).

    7. Liu, J.-L., Chen, F.-F., Lung, J., et alPrognostic significance of p62/SQSTM1 subcellular localization and LC3B in oral squamous cell carcinoma. Br. J. Cancer 111(5), 944-954 (2014).