Aneuploidy, a state of chromosome imbalance, is a hallmark of human tumors, but its role in cancer still remains to be fully elucidated. To understand the consequences of whole-chromosome-level aneuploidies on the proteome, we integrated aneuploidy, transcriptomic, and proteomic data from hundreds of The Cancer Genome Atlas/Clinical Proteomic Tumor Analysis Consortium tumor samples. We found a surprisingly large number of expression changes happened on other, non-aneuploid chromosomes. Moreover, we identified an association between those changes and co-complex members of proteins from aneuploid chromosomes. This co-abundance association is tightly regulated for aggregation-prone aneuploid proteins and those involved in a smaller number of complexes. On the other hand, we observed that complexes of the cellular core machinery are under functional selection to maintain their stoichiometric balance in aneuploid tumors. Ultimately, we provide evidence that those compensatory and functional maintenance mechanisms are established through post-translational control, and that the degree of success of a tumor to deal with aneuploidy-induced stoichiometric imbalance impacts the activation of cellular protein degradation programs and patient survival.

Regulation of protein complex partners as a compensatory mechanism in aneuploid tumors / G. Senger, S. Santaguida, M.H. Schaefer. - In: ELIFE. - ISSN 2050-084X. - 11:(2022 May 16), pp. e75526.1-e75526.19. [10.7554/eLife.75526]

Regulation of protein complex partners as a compensatory mechanism in aneuploid tumors

S. Santaguida
Secondo
;
2022

Abstract

Aneuploidy, a state of chromosome imbalance, is a hallmark of human tumors, but its role in cancer still remains to be fully elucidated. To understand the consequences of whole-chromosome-level aneuploidies on the proteome, we integrated aneuploidy, transcriptomic, and proteomic data from hundreds of The Cancer Genome Atlas/Clinical Proteomic Tumor Analysis Consortium tumor samples. We found a surprisingly large number of expression changes happened on other, non-aneuploid chromosomes. Moreover, we identified an association between those changes and co-complex members of proteins from aneuploid chromosomes. This co-abundance association is tightly regulated for aggregation-prone aneuploid proteins and those involved in a smaller number of complexes. On the other hand, we observed that complexes of the cellular core machinery are under functional selection to maintain their stoichiometric balance in aneuploid tumors. Ultimately, we provide evidence that those compensatory and functional maintenance mechanisms are established through post-translational control, and that the degree of success of a tumor to deal with aneuploidy-induced stoichiometric imbalance impacts the activation of cellular protein degradation programs and patient survival.
English
aneuploidy; cancer biology; complex stoichiometry; computational biology; human; protein aggregation; systems biology;
Settore BIO/11 - Biologia Molecolare
Articolo
Esperti anonimi
Pubblicazione scientifica
Goal 3: Good health and well-being
16-mag-2022
eLife Sciences Publications
11
e75526
1
19
19
Pubblicato
Periodico con rilevanza internazionale
pubmed
crossref
Aderisco
info:eu-repo/semantics/article
Regulation of protein complex partners as a compensatory mechanism in aneuploid tumors / G. Senger, S. Santaguida, M.H. Schaefer. - In: ELIFE. - ISSN 2050-084X. - 11:(2022 May 16), pp. e75526.1-e75526.19. [10.7554/eLife.75526]
open
Prodotti della ricerca::01 - Articolo su periodico
3
262
Article (author)
Periodico con Impact Factor
G. Senger, S. Santaguida, M.H. Schaefer
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2434/1018724
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