Anti-LC3 (Rat) pAb

Catalog No:
MBL-PD014
$416.00

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Polyclonal Antibody of 100 µl targeting LC3 for WB.

Product Specifications
Application WB
Reactivity Human, Mouse, Rat, Hamster
Clonality Polyclonal
Host Rabbit
Immunogen Full-length recombinant rat LC3
Gene ID - Human

84557

Gene ID - Mouse

66734

Formulation 100 μl volume of PBS containing 50% glycerol, pH 7.2. No preservative is contained.
Documents & Links for Anti-LC3 (Rat) pAb
Datasheet Anti-LC3 (Rat) pAb Datasheet

Documents & Links for Anti-LC3 (Rat) pAb
Datasheet Anti-LC3 (Rat) pAb Datasheet

Citations for Anti-LC3 (Rat) pAb – 29 Found
Takamura, Ayumi; Higaki, Katsumi; Kajimaki, Kenya; Otsuka, Susumu; Ninomiya, Haruaki; Matsuda, Junichiro; Ohno, Kousaku; Suzuki, Yoshiyuki; Nanba, Eiji. Enhanced autophagy and mitochondrial aberrations in murine G(M1)-gangliosidosis. Biochemical And Biophysical Research Communications. 2008;367(3):616-22.  PubMed
Comments: Used in: WB
Takamura, Ayumi; Higaki, Katsumi; Kajimaki, Kenya; Otsuka, Susumu; Ninomiya, Haruaki; Matsuda, Junichiro; Ohno, Kousaku; Suzuki, Yoshiyuki; Nanba, Eiji. Enhanced autophagy and mitochondrial aberrations in murine G(M1)-gangliosidosis. Biochemical And Biophysical Research Communications. 2008;367(3):616-22.  PubMed
Comments: Used in: IHC
Wong, Hon Kit; Bauer, Peter O; Kurosawa, Masaru; Goswami, Anand; Washizu, Chika; Machida, Yoko; Tosaki, Asako; Yamada, Mizuki; Knöpfel, Thomas; Nakamura, Takemichi; Nukina, Nobuyuki. Blocking acid-sensing ion channel 1 alleviates Huntington's disease pathology via an ubiquitin-proteasome system-dependent mechanism. Human Molecular Genetics. 2008;17(20):3223-35.  PubMed
Comments: Used in: WB
Maycotte, Paola; Guemez-Gamboa, Alicia; Moran, Julio. Apoptosis and autophagy in rat cerebellar granule neuron death: Role of reactive oxygen species. Journal Of Neuroscience Research. 2010;88(1):73-85.  PubMed
Comments: Used in: WB
Vazquez-Martin, Alejandro; Oliveras-Ferraros, Cristina; Menendez, Javier A. Autophagy facilitates the development of breast cancer resistance to the anti-HER2 monoclonal antibody trastuzumab. Plos One. 2009;4(7):e6251.  PubMed
Comments: Used in: WB
Rouschop, Kasper M A; Ramaekers, Chantal H M A; Schaaf, Marco B E; Keulers, Tom G H; Savelkouls, Kim G M; Lambin, Philippe; Koritzinsky, Marianne; Wouters, Bradly G. Autophagy is required during cycling hypoxia to lower production of reactive oxygen species. Radiotherapy And Oncology : Journal Of The European Society For Therapeutic Radiology And Oncology. 2009;92(3):411-6.  PubMed
Comments: Used in: WB
Otomo, Takanobu; Higaki, Katsumi; Nanba, Eiji; Ozono, Keiichi; Sakai, Norio. Inhibition of autophagosome formation restores mitochondrial function in mucolipidosis II and III skin fibroblasts. Molecular Genetics And Metabolism. 2009;98(4):393-9.  PubMed
Comments: Used in: WB
Vega-Naredo, Ignacio; Caballero, Beatriz; Sierra, Verónica; Huidobro-Fernández, Covadonga; de Gonzalo-Calvo, David; García-Macia, Marina; Tolivia, Delio; Rodríguez-Colunga, María Josefa; Coto-Montes, Ana. Sexual dimorphism of autophagy in Syrian hamster Harderian gland culminates in a holocrine secretion in female glands. Autophagy. 2009;5(7):1004-17.  PubMed
Comments: Used in: WB
Wang, Jia; Hasui, Kazuhisa; Jia, Xinshan; Matsuyama, Takami; Eizuru, Yoshito. Possible role for external environmental stimuli in nasopharyngeal NK/T-cell lymphomas in the northeast of China with EBV infection-related autophagic cell death: a pathoepidemiological analysis. Journal Of Clinical And Experimental Hematopathology : Jceh. 2009;49(2):97-108.  PubMed
Comments: Used in: IHC
Rouschop, Kasper M A; van den Beucken, Twan; Dubois, Ludwig; Niessen, Hanneke; Bussink, Johan; Savelkouls, Kim; Keulers, Tom; Mujcic, Hilda; Landuyt, Willy; Voncken, Jan Willem; Lambin, Philippe; van der Kogel, Albert J; Koritzinsky, Marianne; Wouters, Bradly G. The unfolded protein response protects human tumor cells during hypoxia through regulation of the autophagy genes MAP1LC3B and ATG5. The Journal Of Clinical Investigation. 2010;120(1):127-41.  PubMed
Comments: Used in: WB
Brown, Jacquelynn E; Zeiger, Stephanie L H; Hettinger, Jane C; Brooks, Joshua D; Holt, Benjamin; Morrow, Jason D; Musiek, Erik S; Milne, Ginger; McLaughlin, Bethann. Essential role of the redox-sensitive kinase p66shc in determining energetic and oxidative status and cell fate in neuronal preconditioning. The Journal Of Neuroscience : The Official Journal Of The Society For Neuroscience. 2010;30(15):5242-52.  PubMed
Comments: Used in: ICC
Jaeger, Philipp A; Pickford, Fiona; Sun, Chung-Huan; Lucin, Kurt M; Masliah, Eliezer; Wyss-Coray, Tony. Regulation of amyloid precursor protein processing by the Beclin 1 complex. Plos One. 2010;5(6):e11102.  PubMed
Comments: Used in: WB
Jaeger, Philipp A; Pickford, Fiona; Sun, Chung-Huan; Lucin, Kurt M; Masliah, Eliezer; Wyss-Coray, Tony. Regulation of amyloid precursor protein processing by the Beclin 1 complex. Plos One. 2010;5(6):e11102.  PubMed
Comments: Used in: ICC
Hou, Wen; Han, Jie; Lu, Caisheng; Goldstein, Leslie A; Rabinowich, Hannah. Autophagic degradation of active caspase-8: a crosstalk mechanism between autophagy and apoptosis. Autophagy. 2010;6(7):891-900.  PubMed
Comments: Used in: WB
Hariharan, Nirmala; Zhai, Peiyong; Sadoshima, Junichi. Oxidative stress stimulates autophagic flux during ischemia/reperfusion. Antioxidants & Redox Signaling. 2011;14(11):2179-90.  PubMed
Comments: Used in: WB
O'Donovan, Tracey R; O'Sullivan, Gerald C; McKenna, Sharon L. Induction of autophagy by drug-resistant esophageal cancer cells promotes their survival and recovery following treatment with chemotherapeutics. Autophagy. 2011;7(5):509-24.  PubMed
Comments: Used in: WB
Kurz, Tino; Gustafsson, Bertil; Brunk, Ulf T. Cell sensitivity to oxidative stress is influenced by ferritin autophagy. Free Radical Biology & Medicine. 2011;50(11):1647-58.  PubMed
Comments: Used in: WB
Kim, June-Hyung; Kim, Hee Young; Lee, Young-Kyoung; Yoon, Young-Sil; Xu, Wei Guang; Yoon, Joon-Kee; Choi, Sung-E; Ko, Young-Gyu; Kim, Min-Jung; Lee, Su-Jae; Wang, Hee-Jung; Yoon, Gyesoon. Involvement of mitophagy in oncogenic K-Ras-induced transformation: overcoming a cellular energy deficit from glucose deficiency. Autophagy. 2011;7(10):1187-98.  PubMed
Comments: Used in: WB
Son, Young-Ok; Wang, Xin; Hitron, John Andrew; Zhang, Zhuo; Cheng, Senping; Budhraja, Amit; Ding, Songze; Lee, Jeong-Chae; Shi, Xianglin. Cadmium induces autophagy through ROS-dependent activation of the LKB1-AMPK signaling in skin epidermal cells. Toxicology And Applied Pharmacology. 2011;255(3):287-96.  PubMed
Comments: Used in: WB
Vega-Naredo, Ignacio; Caballero, Beatriz; Sierra, Verónica; García-Macia, Marina; de Gonzalo-Calvo, David; Oliveira, Paulo J; Rodríguez-Colunga, María Josefa; Coto-Montes, Ana. Melatonin modulates autophagy through a redox-mediated action in female Syrian hamster Harderian gland controlling cell types and gland activity. Journal Of Pineal Research. 2012;52(1):80-92.  PubMed
Comments: Used in: WB
Cui, Derong; Wang, Li; Qi, Aihua; Zhou, Quanhong; Zhang, Xiaoli; Jiang, Wei. Propofol prevents autophagic cell death following oxygen and glucose deprivation in PC12 cells and cerebral ischemia-reperfusion injury in rats. Plos One. 7(4):e35324.  PubMed
Comments: Used in: WB
Tsuchiya, Yoshiki; Taniguchi, Hiroaki; Ito, Yoshiyuki; Morita, Tomoko; Karim, M Rezaul; Ohtake, Norihito; Fukagai, Kousuke; Ito, Takao; Okamuro, Shota; Iemura, Shun-Ichiro; Natsume, Tohru; Nishida, Eisuke; Kobayashi, Akira. The casein kinase 2-nrf1 axis controls the clearance of ubiquitinated proteins by regulating proteasome gene expression. Molecular And Cellular Biology. 2013;33(17):3461-72.  PubMed
Comments: Used in: WB
Kobayashi, Shouhei; Koujin, Takako; Kojidani, Tomoko; Osakada, Hiroko; Mori, Chie; Hiraoka, Yasushi; Haraguchi, Tokuko. BAF is a cytosolic DNA sensor that leads to exogenous DNA avoiding autophagy. Proceedings Of The National Academy Of Sciences Of The United States Of America. 2015;112(22):7027-32.  PubMed
Comments: Used in: ICC
Bermejo-Millo, Juan Carlos; Guimarães, Marcela Rodrigues Moreira; de Luxán-Delgado, Beatriz; Potes, Yaiza; Pérez-Martínez, Zulema; Díaz-Luis, Andrea; Caballero, Beatriz; Solano, Juan José; Vega-Naredo, Ignacio; Coto-Montes, Ana. High-Fructose Consumption Impairs the Redox System and Protein Quality Control in the Brain of Syrian Hamsters: Therapeutic Effects of Melatonin. Molecular Neurobiology. 2018;55(10):7973-7986.  PubMed
Comments: Used in: WB
Moruno-Manchon, Jose F; Uzor, Ndidi-Ese; Ambati, Chandrashekar R; Shetty, Vivekananda; Putluri, Nagireddy; Jagannath, Chinnaswamy; McCullough, Louise D; Tsvetkov, Andrey S. Sphingosine kinase 1-associated autophagy differs between neurons and astrocytes. Cell Death & Disease. 2018;9(5):521.  PubMed
Comments: Used in: WB
Shen, Jingcao; Yang, Dan; Zhou, Xingfan; Wang, Yuqian; Tang, Shichuan; Yin, Hong; Wang, Jinglei; Chen, Rui; Chen, Jiaxiang. Role of Autophagy in Zinc Oxide Nanoparticles-Induced Apoptosis of Mouse LEYDIG Cells. International Journal Of Molecular Sciences. 2019;20(16)  PubMed
Comments: Used in: WB
Moreno-Blas, Daniel; Gorostieta-Salas, Elisa; Pommer-Alba, Alexander; Muciño-Hernández, Gabriel; Gerónimo-Olvera, Cristian; Maciel-Barón, Luis Angel; Konigsberg, Mina; Massieu, Lourdes; Castro-Obregón, Susana. Cortical neurons develop a senescence-like phenotype promoted by dysfunctional autophagy. Aging. 2019;11(16):6175-6198.  PubMed
Comments: Used in: WB
Moreno-Blas, Daniel; Gorostieta-Salas, Elisa; Pommer-Alba, Alexander; Muciño-Hernández, Gabriel; Gerónimo-Olvera, Cristian; Maciel-Barón, Luis Angel; Konigsberg, Mina; Massieu, Lourdes; Castro-Obregón, Susana. Cortical neurons develop a senescence-like phenotype promoted by dysfunctional autophagy. Aging. 2019;11(16):6175-6198.  PubMed
Jiang, Li-Jun; Xu, Zhen-Xing; Wu, Ming-Fu; Dong, Gai-Qin; Zhang, Li-Li; Gao, Jun-Yan; Feng, Chen-Xi; Feng, Xing. Resatorvid protects against hypoxic-ischemic brain damage in neonatal rats. Neural Regeneration Research. 2020;15(7):1316-1325.  PubMed
Comments: Used in: WB