Dynamic association of the ULK1 complex with omegasomes during autophagy induction

被引:192
作者
Karanasios, Eleftherios [1 ]
Stapleton, Eloise [1 ]
Manifava, Maria [1 ]
Kaizuka, Takeshi [2 ,3 ,4 ]
Mizushima, Noboru [2 ,3 ,4 ]
Walker, Simon A. [1 ]
Ktistakis, Nicholas T. [1 ]
机构
[1] Babraham Inst, Signalling Programme, Cambridge CB22 3AT, England
[2] Univ Tokyo, Grad Sch, Dept Biochem & Mol Biol, Tokyo 1130033, Japan
[3] Univ Tokyo, Fac Med, Tokyo 1130033, Japan
[4] Tokyo Med & Dent Univ, Dept Physiol & Cell Biol, Tokyo 1138519, Japan
基金
英国生物技术与生命科学研究理事会;
关键词
ULK complex; Autophagy; Imaging; Omegasomes; Phosphatidylinositol; 3-phosphate; PROTEINS; BINDING; EFFECTOR; MEDIATE; KINASE; CELLS;
D O I
10.1242/jcs.132415
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
Induction of autophagy requires the ULK1 protein kinase complex and the Vps34 lipid kinase complex. PtdIns3P synthesised by Vps34 accumulates in omegasomes, membrane extensions of the ER within which some autophagosomes form. The ULK1 complex is thought to target autophagosomes independently of PtdIns3P, and its functional relationship to omegasomes is unclear. Here we show that the ULK1 complex colocalises with omegasomes in a PtdIns3P-dependent way. Live-cell imaging of Atg13 (a ULK1 complex component), omegasomes and LC3 establishes and annotates for the first time a complete sequence of steps leading to autophagosome formation, as follows. Upon starvation, the ULK1 complex forms puncta associated with the ER and sporadically with mitochondria. If PtdIns3P is available, these puncta become omegasomes. Subsequently, the ULK1 complex exits omegasomes and autophagosomes bud off. If PtdIns3P is unavailable, ULK1 puncta are greatly reduced in number and duration. Atg13 contains a region with affinity for acidic phospholipids, required for translocation to punctate structures and autophagy progression.
引用
收藏
页码:5224 / +
页数:22
相关论文
共 48 条
[31]   Autophagosome Precursor Maturation Requires Homotypic Fusion [J].
Moreau, Kevin ;
Ravikumar, Brinda ;
Renna, Maurizio ;
Puri, Claudia ;
Rubinsztein, David C. .
CELL, 2011, 146 (02) :303-317
[32]   SNARE Proteins Are Required for Macroautophagy [J].
Nair, Usha ;
Jotwani, Anjali ;
Geng, Jiefei ;
Gammoh, Noor ;
Richerson, Diana ;
Yen, Wei-Lien ;
Griffith, Janice ;
Nag, Shanta ;
Wang, Ke ;
Moss, Tyler ;
Baba, Misuzu ;
Mcnew, James A. ;
Jiang, Xuejun ;
Reggiori, Fulvio ;
Melia, Thomas J. ;
Klionsky, Daniel J. .
CELL, 2011, 146 (02) :290-302
[33]   Dynamic and transient interactions of Atg9 with autophagosomes, but not membrane integration, are required for autophagy [J].
Orsi, A. ;
Razi, M. ;
Dooley, H. C. ;
Robinson, D. ;
Weston, A. E. ;
Collinson, L. M. ;
Tooze, S. A. .
MOLECULAR BIOLOGY OF THE CELL, 2012, 23 (10) :1860-1873
[34]   Mammalian Atg18 (WIPI2) localizes to omegasome-anchored phagophores and positively regulates LC3 lipidation [J].
Polson, Hannah E. J. ;
de lartigue, Jane ;
Rigden, Daniel J. ;
Reedijk, Marco ;
Urbe, Sylvie ;
Clague, Michael J. ;
Tooze, Sharon A. .
AUTOPHAGY, 2010, 6 (04) :506-522
[35]   WIPI-1α (WIPI49), a member of the novel 7-bladed WIPI protein family, is aberrantly expressed in human cancer and is linked to starvation-induced autophagy [J].
Proikas-Cezanne, T ;
Waddell, S ;
Gaugel, A ;
Frickey, T ;
Lupas, A ;
Nordheim, A .
ONCOGENE, 2004, 23 (58) :9314-9325
[36]   Autophagy and Metabolism [J].
Rabinowitz, Joshua D. ;
White, Eileen .
SCIENCE, 2010, 330 (6009) :1344-1348
[37]   Architecture of the Atg17 Complex as a Scaffold for Autophagosome Biogenesis [J].
Ragusa, Michael J. ;
Stanley, Robin E. ;
Hurley, James H. .
CELL, 2012, 151 (07) :1501-1512
[38]   Plasma membrane contributes to the formation of pre-autophagosomal structures [J].
Ravikumar, Brinda ;
Moreau, Kevin ;
Jahreiss, Luca ;
Puri, Claudia ;
Rubinsztein, David C. .
NATURE CELL BIOLOGY, 2010, 12 (08) :747-U15
[39]  
Ridley SH, 2001, J CELL SCI, V114, P3991
[40]   Mechanisms of Autophagosome Biogenesis [J].
Rubinsztein, David C. ;
Shpilka, Tomer ;
Elazar, Zvulun .
CURRENT BIOLOGY, 2012, 22 (01) :R29-R34