p62/SQSTM1/Sequestosome-1 is an N-recognin of the N-end rule pathway which modulates autophagosome biogenesis

Hyunjoo Cha‐Molstad(Korea Research Institute of Bioscience and Biotechnology), Ji Eun Yu(Chungbuk National University), Zhiwei Feng(National Institute on Drug Abuse), Su Hyun Lee(Seoul National University), Jung Gi Kim(Korea Research Institute of Bioscience and Biotechnology), Peng Yang(National Institute on Drug Abuse), Bitnara Han(Kyung Hee University), Ki Woon Sung(Seoul National University), Young Dong Yoo(Seoul National University), Joonsung Hwang(Korea Research Institute of Bioscience and Biotechnology), Terry McGuire(National Institute on Drug Abuse), Sang Mi Shim(Seoul National University), Hyun Dong Song(Seoul National University), Srinivasrao Ganipisetti(Korea Research Institute of Bioscience and Biotechnology), Nuozhou Wang(National Institute on Drug Abuse), Jun Min Jang(Seoul National University), Min Jae Lee(Seoul National University), Seung Jun Kim(Korea Research Institute of Bioscience and Biotechnology), Kyung Ho Lee(Korea Research Institute of Bioscience and Biotechnology), Jin Tae Hong(Chungbuk National University), Aaron Ciechanover(Seoul National University), Inhee Mook‐Jung(Seoul National University), Kwang Pyo Kim(Kyung Hee University), Xiang‐Qun Xie(National Institute on Drug Abuse), Yong Tae Kwon(Seoul National University), Bo Yeon Kim(Korea Research Institute of Bioscience and Biotechnology)
Nature Communications
July 17, 2017
Cited by 258Open Access
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Abstract

Macroautophagy mediates the selective degradation of proteins and non-proteinaceous cellular constituents. Here, we show that the N-end rule pathway modulates macroautophagy. In this mechanism, the autophagic adapter p62/SQSTM1/Sequestosome-1 is an N-recognin that binds type-1 and type-2 N-terminal degrons (N-degrons), including arginine (Nt-Arg). Both types of N-degrons bind its ZZ domain. By employing three-dimensional modeling, we developed synthetic ligands to p62 ZZ domain. The binding of Nt-Arg and synthetic ligands to ZZ domain facilitates disulfide bond-linked aggregation of p62 and p62 interaction with LC3, leading to the delivery of p62 and its cargoes to the autophagosome. Upon binding to its ligand, p62 acts as a modulator of macroautophagy, inducing autophagosome biogenesis. Through these dual functions, cells can activate p62 and induce selective autophagy upon the accumulation of autophagic cargoes. We also propose that p62 mediates the crosstalk between the ubiquitin-proteasome system and autophagy through its binding Nt-Arg and other N-degrons.Soluble misfolded proteins that fail to be degraded by the ubiquitin proteasome system (UPS) are redirected to autophagy via specific adaptors, such as p62. Here the authors show that p62 recognises N-degrons in these proteins, acting as a N-recognin from the proteolytic N-end rule pathway, and targets these cargos to autophagosomal degradation.


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