2015
DOI: 10.15252/embj.201489524
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Compartment‐specific aggregases direct distinct nuclear and cytoplasmic aggregate deposition

Abstract: Disruption of the functional protein balance in living cells activates protective quality control systems to repair damaged proteins or sequester potentially cytotoxic misfolded proteins into aggregates. The established model based on Saccharomyces cerevisiae indicates that aggregating proteins in the cytosol of eukaryotic cells partition between cytosolic juxtanuclear (JUNQ) and peripheral deposits. Substrate ubiquitination acts as the sorting principle determining JUNQ deposition and subsequent degradation. … Show more

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Cited by 253 publications
(399 citation statements)
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“…A recent study proposes that the JUNQ resides within the nucleus and serves as a deposition center for nuclear as well as for cytosolic aggregated proteins (Miller et al 2015). Accordingly, this site was termed the intranuclear quality-control compartment (INQ).…”
Section: Aggregate Deposition Sites-beyond Aggresomesmentioning
confidence: 99%
“…A recent study proposes that the JUNQ resides within the nucleus and serves as a deposition center for nuclear as well as for cytosolic aggregated proteins (Miller et al 2015). Accordingly, this site was termed the intranuclear quality-control compartment (INQ).…”
Section: Aggregate Deposition Sites-beyond Aggresomesmentioning
confidence: 99%
“…Furthermore, while the Malinovska study did demonstrate interaction between Btn2 and Sis1, [85]) in aggregate formation in various compartments that have been described [91]. These studies cursorily mentioned here merely illustrate that in addition to the disaggregation reaction, Sis1 also plays a role in protein aggregate sorting and processing that requires more work to understand.…”
Section: The Present and Future Of Sis1 Researchmentioning
confidence: 55%
“…Ubiquitylation of GFP-VHL213 modestly participates in aggregate formation and may regulate the spatial distribution of misfolded pVHL It has been shown that juxtanuclear inclusions contain only ubiquitylated proteins (Kaganovich et al, 2008), but this view has been recently challenged (Miller et al, 2015). In pVHL213, there are three lysine residues that could be subjected to ubiquitylation, sumoylation and/or neddylation Park et al, 2015;Stickle et al, 2004).…”
Section: Overexpression Of Gfp-vhl213 Promotes the Formation Of Two Dmentioning
confidence: 99%
“…In either, aggregated proteins are either refolded by chaperones or degraded by the proteasome (Kaganovich et al, 2008;Specht et al, 2011). Moreover, a new intra-nuclear inclusion (INQ) has been described recently for the deposition of nuclear and cytosolic misfolded proteins (Miller et al, 2015). The yeast Hsp104 chaperone binds to stress-induced protein aggregates nonspecifically.…”
Section: Introductionmentioning
confidence: 99%
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