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Research Paper

E2F-1 lacking the transcriptional activity domain induces autophagy

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Pages 1091-1101 | Received 03 Apr 2012, Accepted 17 Jun 2012, Published online: 24 Jul 2012

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Satoshi Tsuyuki, Mei Takabayashi, Manami Kawazu, Kousei Kudo, Akari Watanabe, Yoshiki Nagata, Yusuke Kusama & Kenichi Yoshida. (2014) Detection of WIPI1 mRNA as an indicator of autophagosome formation. Autophagy 10:3, pages 497-513.
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Amber N. Hale, Dan J. Ledbetter, Thomas R. Gawriluk & Edmund B. Rucker, III. (2013) Autophagy. Autophagy 9:7, pages 951-972.
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Articles from other publishers (16)

Amal Kassab, Ishita Gupta & Ala-Eddin Al Moustafa. (2023) Role of E2F transcription factor in oral cancer: Recent insight and advancements. Seminars in Cancer Biology 92, pages 28-41.
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Yuchen Lei & Daniel J. Klionsky. (2023) Transcriptional regulation of autophagy and its implications in human disease. Cell Death & Differentiation 30:6, pages 1416-1429.
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Amit Kumar Verma, Prahalad Singh Bharti, Sahar Rafat, Deepti Bhatt, Yamini Goyal, Kamlesh Kumar Pandey, Sanjeev Ranjan, Saleh A. Almatroodi, Mohammed A. Alsahli, Arshad Husain Rahmani, Ahmad Almatroudi & Kapil Dev. (2021) Autophagy Paradox of Cancer: Role, Regulation, and Duality. Oxidative Medicine and Cellular Longevity 2021, pages 1-17.
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Sudha Bucha, Debashis Mukhopadhyay & Nitai Pada Bhattacharyya. (2019) E2F1 activates MFN2 expression by binding to the promoter and decreases mitochondrial fission and mitophagy in HeLa cells. The FEBS Journal 286:22, pages 4525-4541.
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Lindsey N. Kent & Gustavo Leone. (2019) The broken cycle: E2F dysfunction in cancer. Nature Reviews Cancer 19:6, pages 326-338.
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Xin Xie, Hai-Lian BiSong Lai, Yun-Long ZhangNan LiHua-Jun CaoLing HanHong-Xia Wang & Hui-Hua Li. (2019) The immunoproteasome catalytic β5i subunit regulates cardiac hypertrophy by targeting the autophagy protein ATG5 for degradation. Science Advances 5:5.
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Hiroshi Tazawa, Shinji Kuroda, Joe Hasei, Shunsuke Kagawa & Toshiyoshi Fujiwara. (2017) Impact of Autophagy in Oncolytic Adenoviral Therapy for Cancer. International Journal of Molecular Sciences 18:7, pages 1479.
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JOÃO M.A. DELOU, DEBORAH BIASOLI & HELENA L. BORGES. (2016) The Complex Link between Apoptosis and Autophagy: a Promising New Role for RB. Anais da Academia Brasileira de Ciências 88:4, pages 2257-2275.
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Jens Füllgrabe, Ghita Ghislat, Dong-Hyung Cho & David C. Rubinsztein. (2016) Transcriptional regulation of mammalian autophagy at a glance. Journal of Cell Science 129:16, pages 3059-3066.
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Vemika Chandra, Ella Bhagyaraj, Raman Parkesh & Pawan Gupta. (2016) Transcription factors and cognate signalling cascades in the regulation of autophagy. Biological Reviews 91:2, pages 429-451.
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Xiong Chen, Yingying Zhang, Yingying Shi, Haiwei Lian, Huilin Tu, Song Han, Jun Yin, Biwen Peng, Beiyan Zhou, Xiaohua He & Wanhong Liu. (2016) MiR-129 triggers autophagic flux by regulating a novel Notch-1/ E2F7/Beclin-1 axis to impair the viability of human malignant glioma cells. Oncotarget 7:8, pages 9222-9235.
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Sara Oliván, Ana Cristina Calvo, Samanta Gasco, María Jesús Muñoz, Pilar Zaragoza & Rosario Osta. (2015) Time-Point Dependent Activation of Autophagy and the UPS in SOD1G93A Mice Skeletal Muscle. PLOS ONE 10:8, pages e0134830.
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Zili Zhang, Mei Guo, Shifeng Zhao, Wenxuan Xu, Jiangjuan Shao, Feng Zhang, Li Wu, Yin Lu & Shizhong Zheng. (2015) The update on transcriptional regulation of autophagy in normal and pathologic cells: A novel therapeutic target. Biomedicine & Pharmacotherapy 74, pages 17-29.
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Christin Luft, Jamie Freeman, David Elliott, Nadia Al-Tamimi, Janos Kriston-Vizi, Jacob Heintze, Ida Lindenschmidt, Brian Seed & Robin Ketteler. (2014) Application of Gaussia luciferase in bicistronic and non-conventional secretion reporter constructs. BMC Biochemistry 15:1.
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P Meng & R Ghosh. (2014) Transcription addiction: can we garner the Yin and Yang functions of E2F1 for cancer therapy?. Cell Death & Disease 5:8, pages e1360-e1360.
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Dongfeng Chen, Cuiping Zhu, Xuenan Wang, Xungang Feng, Shuchao Pang, Wenhui Huang, Robert G. Hawley & Bo Yan. (2013) A novel and functional variant within the ATG5 gene promoter in sporadic Parkinson's disease. Neuroscience Letters 538, pages 49-53.
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