The noncanonical role of ULK/ATG1 in ER-to-Golgi trafficking is essential for cellular homeostasis Journal Article


Authors: Joo, J. H.; Wang, B.; Frankel, E.; Ge, L.; Xu, L.; Iyengar, R.; Li-Harms, X.; Wright, C.; Shaw, T. I.; Lindsten, T.; Green, D. R.; Peng, J.; Hendershot, L. M.; Kilic, F.; Sze, J. Y.; Audhya, A.; Kundu, M.
Article Title: The noncanonical role of ULK/ATG1 in ER-to-Golgi trafficking is essential for cellular homeostasis
Abstract: ULK1 and ULK2 are thought to be essential for initiating autophagy, and Ulk1/2-deficient mice die perinatally of autophagy-related defects. Therefore, we used a conditional knockout approach to investigate the roles of ULK1/2 in the brain. Although the mice showed neuronal degeneration, the neurons showed no accumulation of P62+/ubiquitin+ inclusions or abnormal membranous structures, which are observed in mice lacking other autophagy genes. Rather, neuronal death was associated with activation of the unfolded protein response (UPR) pathway. An unbiased proteomics approach identified SEC16A as an ULK1/2 interaction partner. ULK-mediated phosphorylation of SEC16A regulated the assembly of endoplasmic reticulum (ER) exit sites and ER-to-Golgi trafficking of specific cargo, and did not require other autophagy proteins (e.g., ATG13). The defect in ER-to-Golgi trafficking activated the UPR pathway in ULK-deficient cells; both processes were reversed upon expression of SEC16A with a phosphomimetic substitution. Thus, the regulation of ER-to-Golgi trafficking by ULK1/2 is essential for cellular homeostasis. Joo et al. demonstrate that the autophagy-inducing kinases ULK1 and ULK2 regulate ER-to-Golgi trafficking of specific cargo by phosphorylating the COPII scaffold SEC16A. This non-canonical (ATG13-independent) function of the ULKs is essential for maintaining cellular homeostasis under basal physiologic conditions. © 2016 Elsevier Inc.
Journal Title: Molecular Cell
Volume: 62
Issue: 4
ISSN: 1097-2765
Publisher: Cell Press  
Date Published: 2016-05-19
Start Page: 491
End Page: 506
Language: English
DOI: 10.1016/j.molcel.2016.04.020
PROVIDER: scopus
PUBMED: 27203176
PMCID: PMC4993601
DOI/URL:
Notes: Article -- Export Date: 2 June 2016 -- Source: Scopus
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