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Ubiquitin accumulation in autophagy-deficient mice is dependent on the Nrf2-mediated stress response pathway: a potential role for protein aggregation in autophagic substrate selection

Brigit E. Riley, Stephen E. Kaiser, Thomas A. Shaler, Aylwin Ng, Taichi Hara, Mark S. Hipp, Kasper Lage, Ramnik J. Xavier, Kwon‐Yul Ryu, Keiko Taguchi, Masayuki Yamamoto, Keiji Tanaka, Noboru Mizushima, Masaaki Komatsu, Ron R. Kopito

The Journal of Cell Biology · 2010 · ▲ 162 citations

Abstract

Genetic ablation of autophagy(definition) in mice leads to liver and brain degeneration accompanied by the appearance of ubiquitin (Ub) inclusions, which has been considered to support the hypothesis that ubiquitination serves as a cis-acting signal for selective autophagy. We show that tissue-specific disruption of the essential autophagy genes Atg5 and Atg7 leads to the accumulation of all detectable Ub-Ub topologies, arguing against the hypothesis that any particular Ub linkage serves as a specific autophagy signal. The increase in Ub conjugates in Atg7(-/-) liver and brain is completely suppressed by simultaneous knockout of either p62 or Nrf2. We exploit a novel assay for selective autophagy in cell culture, which shows that inactivation of Atg5 leads to the selective accumulation of aggregation-prone proteins, and this does not correlate with an increase in substrate ubiquitination. We propose that protein oligomerization drives autophagic substrate selection and that the accumulation of poly-Ub chains in autophagy-deficient circumstances is an indirect consequence of activation of Nrf2-dependent stress response pathways.

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DOI
10.1083/jcb.201005012
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2026-06-09 MST

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APA
Riley, B.E., Kaiser, S.E., Shaler, T.A., Ng, A., Hara, T., Hipp, M.S., Lage, K., Xavier, R.J., Ryu, K., Taguchi, K., Yamamoto, M., Tanaka, K., Mizushima, N., Komatsu, M., &amp; Kopito, R.R. (2010). Ubiquitin accumulation in autophagy-deficient mice is dependent on the Nrf2-mediated stress response pathway: a potential role for protein aggregation in autophagic substrate selection. <em>The Journal of Cell Biology</em>. https://doi.org/10.1083/jcb.201005012
Vancouver
Riley BE, Kaiser SE, Shaler TA, Ng A, Hara T, Hipp MS, et al. Ubiquitin accumulation in autophagy-deficient mice is dependent on the Nrf2-mediated stress response pathway: a potential role for protein aggregation in autophagic substrate selection. The Journal of Cell Biology. 2010. doi:10.1083/jcb.201005012.
BibTeX
@article{brigit2010Ubiqui, title = {Ubiquitin accumulation in autophagy-deficient mice is dependent on the Nrf2-mediated stress response pathway: a potential role for protein aggregation in autophagic substrate selection}, author = {Brigit E. Riley and Stephen E. Kaiser and Thomas A. Shaler and Aylwin Ng and Taichi Hara and Mark S. Hipp and Kasper Lage and Ramnik J. Xavier and Kwon‐Yul Ryu and Keiko Taguchi and Masayuki Yamamoto and Keiji Tanaka and Noboru Mizushima and Masaaki Komatsu and Ron R. Kopito}, journal = {The Journal of Cell Biology}, year = {2010}, doi = {10.1083/jcb.201005012}, }

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