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Protein aggregation mediates stoichiometry of protein complexes in aneuploid cells

Christopher M. Brennan, Laura Pontano Vaites, Jonathan N. Wells, Stefano Santaguida, João A. Paulo, Zuzana Štorchová, J. Wade Harper, Joseph A. Marsh, Angelika Amon

Genes & Development · 2019 · ▲ 129 citations

Abstract

Aneuploidy, a condition characterized by chromosome gains and losses, causes reduced fitness and numerous cellular stresses, including increased protein aggregation. Here, we identify protein complex stoichiometry imbalances as a major cause of protein aggregation in aneuploid cells. Subunits of protein complexes encoded on excess chromosomes aggregate in aneuploid cells, which is suppressed when expression of other subunits is coordinately altered. We further show that excess subunits are either degraded or aggregate and that protein aggregation is nearly as effective as protein degradation at lowering levels of excess proteins. Our study explains why proteotoxic stress is a universal feature of the aneuploid state and reveals protein aggregation as a form of dosage compensation to cope with disproportionate expression of protein complex subunits.

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Provenance

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OpenAlex
DOI
10.1101/gad.327494.119
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2026-09-08 MST

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APA
Brennan, C.M., Vaites, L.P., Wells, J.N., Santaguida, S., Paulo, J.A., Štorchová, Z., Harper, J.W., Marsh, J.A., &amp; Amon, A. (2019). Protein aggregation mediates stoichiometry of protein complexes in aneuploid cells. <em>Genes & Development</em>. https://doi.org/10.1101/gad.327494.119
Vancouver
Brennan CM, Vaites LP, Wells JN, Santaguida S, Paulo JA, Štorchová Z, et al. Protein aggregation mediates stoichiometry of protein complexes in aneuploid cells. Genes & Development. 2019. doi:10.1101/gad.327494.119.
BibTeX
@unpublished{christopher2019Protei, title = {Protein aggregation mediates stoichiometry of protein complexes in aneuploid cells}, author = {Christopher M. Brennan and Laura Pontano Vaites and Jonathan N. Wells and Stefano Santaguida and João A. Paulo and Zuzana Štorchová and J. Wade Harper and Joseph A. Marsh and Angelika Amon}, journal = {Genes & Development}, year = {2019}, doi = {10.1101/gad.327494.119}, }

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