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Nature Structural & Molecular Biology|September 16, 2025
Phase separation promotes Atg8 lipidation and vesicle condensation for autophagy progressionYuko Fujioka, Takuma Tsuji, Tetsuya Kotani, et al.
The Journal of Cell Biology|October 8, 2014
Hrr25 triggers selective autophagy-related pathways by phosphorylating receptor proteinsChikara Tanaka, Li-Jing Tan, Keisuke Mochida, et al.
Nature Structural & Molecular Biology|March 19, 2013
Atg12-Atg5 conjugate enhances E2 activity of Atg3 by rearranging its catalytic siteMachiko Sakoh-Nakatogawa, Kazuaki Matoba, Eri Asai, et al.
Elife|February 28, 2019
Two distinct mechanisms target the autophagy-related E3 complex to the pre-autophagosomal structureKumi Harada, Tetsuya Kotani, Hiromi Kirisako, et al.
The Journal of Biological Chemistry|February 7, 2012
Autophagy-related protein 32 acts as autophagic degron and directly initiates mitophagyNoriko Kondo-Okamoto, Nobuo N Noda, Sho W Suzuki, et al.
Cell Reports|June 21, 2016
Structural Basis for Receptor-Mediated Selective Autophagy of Aminopeptidase I AggregatesAkinori Yamasaki, Yasunori Watanabe, Wakana Adachi, et al.
The Journal of Biological Chemistry|July 11, 2012
The autophagy-related protein kinase Atg1 interacts with the ubiquitin-like protein Atg8 via the Atg8 family interacting motif to facilitate autophagosome formationHitoshi Nakatogawa, Shiran Ohbayashi, Machiko Sakoh-Nakatogawa, et al.
Nature Structural & Molecular Biology|November 13, 2012
Noncanonical recognition and UBL loading of distinct E2s by autophagy-essential Atg7Masaya Yamaguchi, Kazuaki Matoba, Ryoko Sawada, et al.
Nature Structural & Molecular Biology|July 9, 2021
Membrane perturbation by lipidated Atg8 underlies autophagosome biogenesisTatsuro Maruyama, Jahangir Md Alam, Tomoyuki Fukuda, et al.
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