| Literature DB >> 25998554 |
Leon H Chew1, Shan Lu, Xu Liu, Franco Kk Li, Angela Yh Yu, Daniel J Klionsky, Meng-Qiu Dong, Calvin K Yip.
Abstract
The Atg1 complex, which contains 5 major subunits: Atg1, Atg13, Atg17, Atg29, and Atg31, regulates the induction of autophagy and autophagosome formation. To gain a better understanding of the overall architecture and assembly mechanism of this essential autophagy regulatory complex, we have reconstituted a core assembly of the Saccharomyces cerevisiae Atg1 complex composed of full-length Atg17, Atg29, and Atg31, along with the C-terminal domains of Atg1 (Atg1[CTD]) and Atg13 (Atg13[CTD]). Using chemical-crosslinking coupled with mass spectrometry (CXMS) analysis we systematically mapped the intersubunit interaction interfaces within this complex. Our data revealed that the intrinsically unstructured C-terminal domain of Atg29 interacts directly with Atg17, whereas Atg17 interacts with Atg13 in 2 distinct intrinsically unstructured regions, including a previously unknown motif that encompasses several putative phosphorylation sites. The Atg1[CTD] crosslinks exclusively to the Atg13[CTD] and does not appear to make direct contact with the Atg17-Atg31-Atg29 scaffold. Finally, single-particle electron microscopy analysis revealed that both the Atg13[CTD] and Atg1[CTD] localize to the tip regions of Atg17-Atg31-Atg29 and do not alter the distinct curvature of this scaffolding subcomplex. This work provides a comprehensive understanding of the subunit interactions in the fully assembled Atg1 core complex, and uncovers the potential role of intrinsically disordered regions in regulating complex integrity.Entities:
Keywords: Atg, autophagy related; Atg1; CTD, C-terminal domain; CXMS, chemical-crosslinking coupled with mass spectrometry; Cvt, cytoplasm-to-vacuole targeting; FDR, false-discovery rate; IDR, intrinsically disordered region; PAS, phagophore assembly site; PtdIns3K, phosphatidylinositol 3-kinase; Saccharomyces cerevisiae; autophagy; crosslinking mass spectrometry; electron microscopy; macromolecular assembly
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Year: 2015 PMID: 25998554 PMCID: PMC4502708 DOI: 10.1080/15548627.2015.1040972
Source DB: PubMed Journal: Autophagy ISSN: 1554-8627 Impact factor: 16.016