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Chino, H.

Publications and source records attributed to Chino, H..

2 recordsLinked to original sources

Autophagy adaptors mediate Parkin-dependent mitophagy by forming sheet-like liquid condensates

During PINK1 and Parkin-mediated mitophagy, autophagy adaptors are recruited to depolarized mitochondria to promote the selective degradation of mitochondria. Autophagy adaptors such as OPTN and NDP52 bridge mitochondria and autophagosomal membranes by binding to ubiquitinated mitochondrial proteins and autophagosomal ATG8 family proteins. Here, we demonstrate that OPTN and NDP52 form sheet-like phase-separated condensates with liquid-like properties on the surface of ubiquitinated mitochondria. The dynamic and liquid-like feature of OPTN condensates is important for mitophagy activity because reducing the liquidity of OPTN-ubiquitin condensates suppresses the recruitment of ATG9 vesicles and impairs mitophagy. Based on these results, we propose a dynamic liquid-like model of autophagy adaptors, in contrast to a stoichiometric model, to explain their interactions between autophagic membranes (i.e., ATG9 vesicles and isolation membranes) and mitochondrial membranes during Parkin-mediated mitophagy. This model underscores the importance of liquid-liquid phase separation in facilitating membrane- membrane contacts, likely through the generation of capillary forces.

cell biology↗

Phosphorylation by casein kinase 2 ensures ER-phagy receptor TEX264 binding to ATG8 proteins

Selective autophagy cargos are recruited to autophagosomes primarily by interacting with autophagosomal ATG8 family proteins via the LC3-interacting region (LIR). The upstream sequence of most LIRs contains negatively charged residues such as Asp, Glu, and phosphorylated Ser and Thr. However, the significance of LIR phosphorylation (compared with having acidic amino acids) and the structural basis of phosphorylated LIR-ATG8 binding are not entirely understood. Here, we show that the serine residues upstream of the core LIR of the endoplasmic reticulum (ER)-phagy receptor TEX264 are phosphorylated by casein kinase 2, which is critical for its interaction with ATG8s, autophagosomal localization, and ER-phagy. Structural analysis showed that phosphorylation of these serine residues increased binding affinity by producing multiple hydrogen bonds with ATG8s that cannot be mimicked by acidic residues. This binding mode is different from those of other ER-phagy receptors that utilize a downstream helix, which is absent from TEX264, to increase affinity. These results suggest that phosphorylation of the LIR is critically important for strong LIR-ATG8 interactions, even in the absence of auxiliary interactions.

cell biology↗