Anti-Atg3 (Human) mAb (Clone: 3E8)

Catalog No:
MBL-M133-3

Availability: 12PM PT on Dec. 3, 2024

Monoclonal Antibody of 100 μg targeting Atg3 for ICC, IP, WB.

Product Specifications
Application ICC, IP, WB
Reactivity Human, Mouse, Rat, Hamster
Clonality Monoclonal IgG2b
Host Mouse
Immunogen Recombinant human Atg3
Gene ID - Human

64422

Gene ID - Mouse

67841

Gene ID - Rat

171415

Formulation 100 μg IgG in 100 μl volume of PBS containing 50% glycerol, pH 7.2. No preservative is contained.

Citations for Anti-Atg3 (Human) mAb (Clone: 3E8) – 5 Found
Metlagel, Zoltan; Otomo, Chinatsu; Takaesu, Giichi; Otomo, Takanori. Structural basis of ATG3 recognition by the autophagic ubiquitin-like protein ATG12. Proceedings Of The National Academy Of Sciences Of The United States Of America. 2013;110(47):18844-9.  PubMed
Comments: Used in: WB
Metlagel, Zoltan; Otomo, Chinatsu; Takaesu, Giichi; Otomo, Takanori. Structural basis of ATG3 recognition by the autophagic ubiquitin-like protein ATG12. Proceedings Of The National Academy Of Sciences Of The United States Of America. 2013;110(47):18844-9.  PubMed
Comments: Used in: WB
Choi, Jayoung; Park, Sunmin; Biering, Scott B; Selleck, Elizabeth; Liu, Catherine Y; Zhang, Xin; Fujita, Naonobu; Saitoh, Tatsuya; Akira, Shizuo; Yoshimori, Tamotsu; Sibley, L David; Hwang, Seungmin; Virgin, Herbert W. The parasitophorous vacuole membrane of Toxoplasma gondii is targeted for disruption by ubiquitin-like conjugation systems of autophagy. Immunity. 2014;40(6):924-35.  PubMed
Comments: Used in: WB
Yamashita, Shun-Ichi; Jin, Xiulian; Furukawa, Kentaro; Hamasaki, Maho; Nezu, Akiko; Otera, Hidenori; Saigusa, Tetsu; Yoshimori, Tamotsu; Sakai, Yasuyoshi; Mihara, Katsuyoshi; Kanki, Tomotake. Mitochondrial division occurs concurrently with autophagosome formation but independently of Drp1 during mitophagy. The Journal Of Cell Biology. 2016;215(5):649-665.  PubMed
Comments: Used in: WB
Allavena, Giulia; Boyd, Caroline; Oo, Kyaw Soe; Maellaro, Emilia; Zhivotovsky, Boris; Kaminskyy, Vitaliy O. Suppressed translation and ULK1 degradation as potential mechanisms of autophagy limitation under prolonged starvation. Autophagy. 2016;12(11):2085-2097.  PubMed
Comments: Used in: WB