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- W3146800144 endingPage "158" @default.
- W3146800144 startingPage "149" @default.
- W3146800144 abstract "Eukaryotic cells are usually diploid, meaning they contain two copies of each chromosome. However, aberrant chromosome numbers due to both, chromosome gains and losses, are often observed in nature. They can occur as a planned developmental step, but are more often an uninvited result of mitotic failure. Recent discoveries have improved our understanding of the cellular effects of aneuploidy - uneven chromosome numbers, and polyploidy - multiplication of entire sets of chromosomes - in eukaryotic cells. The results show that mitotic errors lead to rapid and extensive modifications of many cellular processes and affect proliferation, proteome balance, genome stability and more. The findings picture the cellular response to aneuploidy and polyploidy as a complex, tissue and context dependent network of events. Here I review the latest discoveries, with an emphasis on pathological aspects of aneuploidy and polyploidy in human cells." @default.
- W3146800144 created "2021-04-13" @default.
- W3146800144 creator A5044856730 @default.
- W3146800144 date "2021-09-01" @default.
- W3146800144 modified "2023-10-17" @default.
- W3146800144 title "Consequences of mitotic failure – The penalties and the rewards" @default.
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