Resumen
Aneuploidy disrupts cellular homeostasis. However, the molecular mechanisms underlying the physiological responses and adaptation to aneuploidy are not well understood. Deciphering these mechanisms is important because aneuploidy is associated with diseases, including intellectual disability and cancer. Although tumors and mammalian aneuploid cells, including several cancer cell lines, show altered levels of sphingolipids, the role of sphingolipids in aneuploidy remains unknown. Here, we show that ceramides and long-chain bases, sphingolipid molecules that slow proliferation and promote survival, are increased by aneuploidy. Sphingolipid levels are tightly linked to serine synthesis, and inhibiting either serine or sphingolipid synthesis can specifically impair the fitness of aneuploid cells. Remarkably, the fitness of aneuploid cells improves or deteriorates upon genetically decreasing or increasing ceramides, respectively. Combined targeting of serine and sphingolipid synthesis could be exploited to specifically target cancer cells, the vast majority of which are aneuploid. Hwang et al. demonstrate that aneuploid yeast cells rely on the synthesis of the amino acid serine for their viability. Serine is used for the synthesis of sphingolipids that control the fitness of aneuploid cells. Aneuploid cells are vulnerable to combined inhibition of serine and sphingolipid biosynthesis.
| Idioma original | English |
|---|---|
| Páginas (desde-hasta) | 3807-3818 |
| Número de páginas | 12 |
| Publicación | Cell Reports |
| Volumen | 21 |
| N.º | 13 |
| DOI | |
| Estado | Published - dic 26 2017 |
Nota bibliográfica
Publisher Copyright:© 2017 The Author(s)
Financiación
We are thankful to Sofia Ordonez, Raquelle Torres, and Aracelli Acevedo for technical assistance. We are grateful to Jennifer Benanti and Angelika Amon for reagents. We thank Nada Kalaany for critical reading of the manuscript. This research was supported by the Richard and Susan Smith Family Foundation ( s67400000023429 ) and the Searle Scholars Program ( 13-ssp-268 ) to E.M.T. This work was also supported by a grant from the NIH ( 1R01GM118481-01A1 ) to E.M.T.
| Financiadores | Número del financiador |
|---|---|
| National Institutes of Health (NIH) | |
| National Institute of General Medical Sciences DP2GM119177 Sophie Dumont National Institute of General Medical Sciences | R01GM118481 |
| National Institute of General Medical Sciences DP2GM119177 Sophie Dumont National Institute of General Medical Sciences | |
| Richard and Susan Smith Family Foundation | s67400000023429 |
| Richard and Susan Smith Family Foundation | |
| Searle Scholars Program | 13-ssp-268 |
| Searle Scholars Program |
ODS de las Naciones Unidas
Este resultado contribuye a los siguientes Objetivos de Desarrollo Sostenible
-
Good health and well being
ASJC Scopus subject areas
- General Biochemistry, Genetics and Molecular Biology
Huella
Profundice en los temas de investigación de 'Serine-Dependent Sphingolipid Synthesis Is a Metabolic Liability of Aneuploid Cells'. En conjunto forman una huella única.Citar esto
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