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Journal of the American Chemical Society|September 15, 2022
Targeting the ATG5-ATG16L1 Protein-Protein Interaction with a Hydrocarbon-Stapled Peptide Derived from ATG16L1 for Autophagy InhibitionJin Cui, Yuta Ogasawara, Ikuko Kurata, et al.
The Journal of Biological Chemistry|November 8, 2007
The Atg12-Atg5 conjugate has a novel E3-like activity for protein lipidation in autophagyTakao Hanada, Nobuo N Noda, Yoshinori Satomi, et al.
The Journal of Biological Chemistry|May 5, 2004
Solution structure of the tandem Src homology 3 domains of p47phox in an autoinhibited formSatoru Yuzawa, Kenji Ogura, Masataka Horiuchi, et al.
International Journal of Oncology|September 6, 2007
MM-1 facilitates degradation of c-Myc by recruiting proteasome and a novel ubiquitin E3 ligaseYumiko Kimura, Arisa Nagao, Yuko Fujioka, et al.
Molecular Cell|November 8, 2011
Structural basis of Atg8 activation by a homodimeric E1, Atg7Nobuo N Noda, Kenji Satoo, Yuko Fujioka, et al.
Molecular Cell|January 30, 2020
Liquidity Is a Critical Determinant for Selective Autophagy of Protein CondensatesAkinori Yamasaki, Jahangir Md Alam, Daisuke Noshiro, et al.
Molecular and Cellular Biology|August 2, 2005
Tor2 directly phosphorylates the AGC kinase Ypk2 to regulate actin polarizationYoshiaki Kamada, Yuko Fujioka, Nobuo N Suzuki, et al.
Genes to Cells : Devoted to Molecular & Cellular Mechanisms|November 22, 2008
Structural basis of target recognition by Atg8/LC3 during selective autophagyNobuo N Noda, Hiroyuki Kumeta, Hitoshi Nakatogawa, et al.
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.
Journal of Plant Physiology|October 13, 2006
Transgenic Arabidopsis plants expressing the rice dehydroascorbate reductase gene are resistant to salt stressTakashi Ushimaru, Tomofumi Nakagawa, Yuko Fujioka, et al.
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