Density separation of quiescent yeast using iodixanol

As yeast are starved of nutrients, they enter G , a quiescent state. Quiescent yeast (Q) cells retain viability for extended periods of time and resume growth following supplementation of missing nutrients. As such, Q cells have become a valuable model for studying longevity and self-renewal of chro...

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Veröffentlicht in:BioTechniques 2017-10, Vol.63 (4), p.169-173
Hauptverfasser: Quasem, Ishtiaque, Luby, Christopher J, Mace, Charles R, Fuchs, Stephen M
Format: Artikel
Sprache:eng
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Zusammenfassung:As yeast are starved of nutrients, they enter G , a quiescent state. Quiescent yeast (Q) cells retain viability for extended periods of time and resume growth following supplementation of missing nutrients. As such, Q cells have become a valuable model for studying longevity and self-renewal of chronologically aged cells. Traditional isolation of Q cells involves a relatively long centrifugation time through a continuous density gradient. Here, we describe a rapid and cost-effective Q-cell isolation technique that uses a single-density, one-step gradient prepared from media containing iodixanol.
ISSN:0736-6205
1940-9818
DOI:10.2144/000114596