Excess Met1-linked ubiquitination leads to solid aggregate formation

Abstract The ubiquitin ligase HOIL-1 regulates the formation of Met1-linked (linear) ubiquitin chains through its coordination with the E3 ligase HOIP within the Linear Ubiquitin Chain Assembly Complex (LUBAC). While HOIP-dependent Met1-linked ubiquitination is well established in inflammation and immunity, the physiological importance of its quantitative control remains unclear. Here, we show that cells expressing catalytically inactive HOIL-1 accumulate increased α-synuclein, tau, and amyloid-β aggregates. This is associated with defective late-stage autophagic flux, characterized by impaired delivery of p62-positive aggregates to lysosomes. In parallel, p62 bodies undergo a biophysical transition from dynamic, liquid-like condensates to rigid, solid-like structures. Elevation of Met1-linked ubiquitin chains, either through HOIL-1 inactivation or depletion of the Met1-specific deubiquitinase OTULIN, phenocopies these defects. Together, our findings identify HOIL-1 as a key regulator of aggregate clearance and proteostasis through quantitative control of Met1-linked ubiquitination.

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Publication Details

Journal
The EMBO Journal
Published
2026-09-28
DOI
https://doi.org/10.1038/s44318-026-00909-7
Primary Topic
Autophagy in Disease and Therapy
Type
article
Field-Weighted Citation Impact
0.00
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article

Excess Met1-linked ubiquitination leads to solid aggregate formation

Jun-Ichi Sakamaki, Takuto NAKAJIMA, Hiromi Nishimura, Masaaki Komatsu et al.
The EMBO Journal
Autophagy in Disease and Therapy
article

Excess Met1-linked ubiquitination leads to solid aggregate formation

Jun-Ichi Sakamaki, Takuto NAKAJIMA, Hiromi Nishimura, Masaaki Komatsu, Fumiyo Ikeda, Stephanie Kaypee, Minori Miyasaka
article en

Abstract

Abstract The ubiquitin ligase HOIL-1 regulates the formation of Met1-linked (linear) ubiquitin chains through its coordination with the E3 ligase HOIP within the Linear Ubiquitin Chain Assembly Complex (LUBAC). While HOIP-dependent Met1-linked ubiquitination is well established in inflammation and immunity, the physiological importance of its quantitative control remains unclear. Here, we show that cells expressing catalytically inactive HOIL-1 accumulate increased α-synuclein, tau, and amyloid-β aggregates. This is associated with defective late-stage autophagic flux, characterized by impaired delivery of p62-positive aggregates to lysosomes. In parallel, p62 bodies undergo a biophysical transition from dynamic, liquid-like condensates to rigid, solid-like structures. Elevation of Met1-linked ubiquitin chains, either through HOIL-1 inactivation or depletion of the Met1-specific deubiquitinase OTULIN, phenocopies these defects. Together, our findings identify HOIL-1 as a key regulator of aggregate clearance and proteostasis through quantitative control of Met1-linked ubiquitination.

The EMBO Journal
The University of Osaka (JP)
Openalex Percentile: Top 11%
Autophagy in Disease and Therapy
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