| Literature DB >> 27246247 |
Xiaofang Cheng1,2, Yingli Wang1, Yukang Gong1, Faxiang Li1,2, Yujiao Guo1, Shichen Hu1, Jianping Liu1, Lifeng Pan1,3.
Abstract
FYCO1 (FYVE and coiled-coil domain containing 1) functions as an autophagy adaptor in directly linking autophagosomes with the microtubule-based kinesin motor, and plays an essential role in the microtubule plus end-directed transport of autophagic vesicles. The specific association of FYCO1 with autophagosomes is mediated by its interaction with Atg8-family proteins decorated on the outer surface of autophagosome. However, the mechanistic basis governing the interaction between FYCO1 and Atg8-family proteins is largely unknown. Here, using biochemical and structural analyses, we demonstrated that FYCO1 contains a unique LC3-interacting region (LIR), which discriminately binds to mammalian Atg8 orthologs and preferentially binds to the MAP1LC3A and MAP1LC3B. In addition to uncovering the detailed molecular mechanism underlying the FYCO1 LIR and MAP1LC3A interaction, the determined FYCO1-LIR-MAP1LC3A complex structure also reveals a unique LIR binding mode for Atg8-family proteins, and demonstrates, first, the functional relevance of adjacent sequences C-terminal to the LIR core motif for binding to Atg8-family proteins. Taken together, our findings not only provide new mechanistic insight into FYCO1-mediated transport of autophagosomes, but also expand our understanding of the interaction modes between LIR motifs and Atg8-family proteins in general.Entities:
Keywords: Atg8-family proteins; FYCO1; LIR and MAP1LC3A interaction; LIR-binding mode; MAP1LC3A; autophagy adaptor
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Year: 2016 PMID: 27246247 PMCID: PMC4968224 DOI: 10.1080/15548627.2016.1185590
Source DB: PubMed Journal: Autophagy ISSN: 1554-8627 Impact factor: 16.016