Literature DB >> 35701073

Extensive protein dosage compensation in aneuploid human cancers.

Klaske M Schukken1, Jason M Sheltzer1.   

Abstract

Aneuploidy is a hallmark of human cancers, but the effects of aneuploidy on protein expression remain poorly understood. To uncover how chromosome copy number changes influence the cancer proteome, we conducted an analysis of hundreds of human cancer cell lines and tumors with matched copy number, RNA expression, and protein expression data. We found that a majority of proteins show dosage compensation and fail to change by the degree expected based on chromosome copy number alone. We uncovered a variety of gene groups that were recurrently buffered upon both chromosome gain and loss, including protein complex subunits and cell cycle genes. Several genetic and biophysical factors were predictive of protein buffering, highlighting complex post-translational regulatory mechanisms that maintain appropriate gene product dosage. Finally, we established that chromosomal aneuploidy has a moderate effect on the expression of oncogenes and tumor suppressors, showing that these key cancer drivers can be subject to dosage compensation as well. In total, our comprehensive analysis of aneuploidy and dosage compensation across cancers will help identify the key driver genes encoded on altered chromosomes and will shed light on the overall consequences of aneuploidy during tumor development.
© 2022 Schukken and Sheltzer; Published by Cold Spring Harbor Laboratory Press.

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Year:  2022        PMID: 35701073      PMCID: PMC9341510          DOI: 10.1101/gr.276378.121

Source DB:  PubMed          Journal:  Genome Res        ISSN: 1088-9051            Impact factor:   9.438


  91 in total

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7.  Altering microtubule dynamics is synergistically toxic with spindle assembly checkpoint inhibition.

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10.  Acquisition of aneuploidy provides increased fitness during the evolution of antifungal drug resistance.

Authors:  Anna M Selmecki; Keely Dulmage; Leah E Cowen; James B Anderson; Judith Berman
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  3 in total

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Journal:  Elife       Date:  2022-09-21       Impact factor: 8.713

2.  The impact of monosomies, trisomies and segmental aneuploidies on chromosomal stability.

Authors:  Dorine C Hintzen; Mar Soto; Michael Schubert; Bjorn Bakker; Diana C J Spierings; Karoly Szuhai; Peter M Lansdorp; Roel J C Kluin; Floris Foijer; René H Medema; Jonne A Raaijmakers
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  3 in total

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