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Sis2 regulates yeast replicative lifespan in a dose-dependent manner

Tolga T. Ölmez, David F. Moreno, Ping Liu, Zane M. Johnson, Madeline M. McGinnis, Benjamin P. Tu, Mark Hochstrasser, Murat Açar

Nature Communications · 2023 · ▲ 13 citations

Abstract

Application of microfluidic platforms facilitated high-precision measurements of yeast replicative lifespan (RLS); however, comparative quantification of lifespan across strain libraries has been missing. Here we microfluidically measure the RLS of 307 yeast strains, each deleted for a single gene. Despite previous reports of extended lifespan in these strains, we found that 56% of them did not actually live longer than the wild-type; while the remaining 44% showed extended lifespans, the degree of extension was often different from what was previously reported. Deletion of SIS2 gene led to the largest RLS increase observed. Sis2 regulated yeast lifespan in a dose-dependent manner, implying a role for the coenzyme A biosynthesis pathway in lifespan regulation. Introduction of the human PPCDC gene in the sis2Δ background neutralized the lifespan extension. RNA-seq experiments revealed transcriptional increases in cell-cycle machinery components in sis2Δ background. High-precision lifespan measurement will be essential to elucidate the gene network governing lifespan.

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Provenance

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OpenAlex
DOI
10.1038/s41467-023-43233-y
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2026-07-15 MST

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APA
Ölmez, T.T., Moreno, D.F., Liu, P., Johnson, Z.M., McGinnis, M.M., Tu, B.P., Hochstrasser, M., &amp; Açar, M. (2023). Sis2 regulates yeast replicative lifespan in a dose-dependent manner. <em>Nature Communications</em>. https://doi.org/10.1038/s41467-023-43233-y
Vancouver
Ölmez TT, Moreno DF, Liu P, Johnson ZM, McGinnis MM, Tu BP, et al. Sis2 regulates yeast replicative lifespan in a dose-dependent manner. Nature Communications. 2023. doi:10.1038/s41467-023-43233-y.
BibTeX
@article{tolga2023Sisreg, title = {Sis2 regulates yeast replicative lifespan in a dose-dependent manner}, author = {Tolga T. Ölmez and David F. Moreno and Ping Liu and Zane M. Johnson and Madeline M. McGinnis and Benjamin P. Tu and Mark Hochstrasser and Murat Açar}, journal = {Nature Communications}, year = {2023}, doi = {10.1038/s41467-023-43233-y}, }

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