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Longitudinal RNA-Seq Analysis of Vertebrate Aging Identifies Mitochondrial Complex I as a Small-Molecule-Sensitive Modifier of Lifespan

Mario Baumgart, Steffen Priebe, Marco Groth, Nils Hartmann, Uwe Menzel, Luca Pandolfini, Philipp Koch, Marius Felder, Michael Ristow, Christoph Englert, Reinhard Guthke, Matthias Platzer, Alessandro Cellerino

Cell Systems · 2016 · ▲ 163 citations

Abstract

Mutations and genetic variability affect gene expression and lifespan, but the impact of variations in gene expression within individuals on their aging-related mortality is poorly understood. We performed a longitudinal study in the short-lived killifish, Nothobranchius furzeri, and correlated quantitative variations in gene expression during early adult life with lifespan. Shorter- and longer-lived individuals differ in their gene expression before the onset of aging-related mortality; differences in gene expression are more pronounced early in life. We identified mitochondrial respiratory chain complex I as a hub in a module of genes whose expression is negatively correlated with lifespan. Accordingly, partial pharmacological inhibition of complex I by the small molecule rotenone reversed aging-related regulation of gene expression and extended lifespan in N. furzeri by 15%. These results support the use of N. furzeri as a vertebrate model for identifying the protein targets, pharmacological modulators, and individual-to-individual variability associated with aging.

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OpenAlex
DOI
10.1016/j.cels.2016.01.014
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2026-07-07 MST

Cite this

APA
Baumgart, M., Priebe, S., Groth, M., Hartmann, N., Menzel, U., Pandolfini, L., Koch, P., Felder, M., Ristow, M., Englert, C., Guthke, R., Platzer, M., &amp; Cellerino, A. (2016). Longitudinal RNA-Seq Analysis of Vertebrate Aging Identifies Mitochondrial Complex I as a Small-Molecule-Sensitive Modifier of Lifespan. <em>Cell Systems</em>. https://doi.org/10.1016/j.cels.2016.01.014
Vancouver
Baumgart M, Priebe S, Groth M, Hartmann N, Menzel U, Pandolfini L, et al. Longitudinal RNA-Seq Analysis of Vertebrate Aging Identifies Mitochondrial Complex I as a Small-Molecule-Sensitive Modifier of Lifespan. Cell Systems. 2016. doi:10.1016/j.cels.2016.01.014.
BibTeX
@article{mario2016Longit, title = {Longitudinal RNA-Seq Analysis of Vertebrate Aging Identifies Mitochondrial Complex I as a Small-Molecule-Sensitive Modifier of Lifespan}, author = {Mario Baumgart and Steffen Priebe and Marco Groth and Nils Hartmann and Uwe Menzel and Luca Pandolfini and Philipp Koch and Marius Felder and Michael Ristow and Christoph Englert and Reinhard Guthke and Matthias Platzer and Alessandro Cellerino}, journal = {Cell Systems}, year = {2016}, doi = {10.1016/j.cels.2016.01.014}, }

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