Dormancy‐to‐death transition in yeast spores occurs due to gradual loss of gene‐expressing ability

Abstract Dormancy is colloquially considered as extending lifespan by being still. Starved yeasts form dormant spores that wake‐up (germinate) when nutrients reappear but cannot germinate (die) after some time. What sets their lifespans and how they age are open questions because what processes occu...

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Main Authors: Théo Maire, Tim Allertz, Max A Betjes, Hyun Youk
Format: Article
Language:English
Published: Wiley 2020-11-01
Series:Molecular Systems Biology
Subjects:
Online Access:https://doi.org/10.15252/msb.20199245
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spelling doaj-2bd1e02a6def4c92bb0831ed28b6eadd2021-08-02T16:02:15ZengWileyMolecular Systems Biology1744-42922020-11-011611n/an/a10.15252/msb.20199245Dormancy‐to‐death transition in yeast spores occurs due to gradual loss of gene‐expressing abilityThéo Maire0Tim Allertz1Max A Betjes2Hyun Youk3Kavli Institute of Nanoscience Delft The NetherlandsKavli Institute of Nanoscience Delft The NetherlandsKavli Institute of Nanoscience Delft The NetherlandsKavli Institute of Nanoscience Delft The NetherlandsAbstract Dormancy is colloquially considered as extending lifespan by being still. Starved yeasts form dormant spores that wake‐up (germinate) when nutrients reappear but cannot germinate (die) after some time. What sets their lifespans and how they age are open questions because what processes occur—and by how much—within each dormant spore remains unclear. With single‐cell‐level measurements, we discovered how dormant yeast spores age and die: spores have a quantifiable gene‐expressing ability during dormancy that decreases over days to months until it vanishes, causing death. Specifically, each spore has a different probability of germinating that decreases because its ability to—without nutrients—express genes decreases, as revealed by a synthetic circuit that forces GFP expression during dormancy. Decreasing amounts of molecules required for gene expression—including RNA polymerases—decreases gene‐expressing ability which then decreases chances of germinating. Spores gradually lose these molecules because they are produced too slowly compared with their degradations, causing gene‐expressing ability to eventually vanish and, thus, death. Our work provides a systems‐level view of dormancy‐to‐death transition.https://doi.org/10.15252/msb.20199245ageingdormancygene expressiongerminationyeast spores
collection DOAJ
language English
format Article
sources DOAJ
author Théo Maire
Tim Allertz
Max A Betjes
Hyun Youk
spellingShingle Théo Maire
Tim Allertz
Max A Betjes
Hyun Youk
Dormancy‐to‐death transition in yeast spores occurs due to gradual loss of gene‐expressing ability
Molecular Systems Biology
ageing
dormancy
gene expression
germination
yeast spores
author_facet Théo Maire
Tim Allertz
Max A Betjes
Hyun Youk
author_sort Théo Maire
title Dormancy‐to‐death transition in yeast spores occurs due to gradual loss of gene‐expressing ability
title_short Dormancy‐to‐death transition in yeast spores occurs due to gradual loss of gene‐expressing ability
title_full Dormancy‐to‐death transition in yeast spores occurs due to gradual loss of gene‐expressing ability
title_fullStr Dormancy‐to‐death transition in yeast spores occurs due to gradual loss of gene‐expressing ability
title_full_unstemmed Dormancy‐to‐death transition in yeast spores occurs due to gradual loss of gene‐expressing ability
title_sort dormancy‐to‐death transition in yeast spores occurs due to gradual loss of gene‐expressing ability
publisher Wiley
series Molecular Systems Biology
issn 1744-4292
publishDate 2020-11-01
description Abstract Dormancy is colloquially considered as extending lifespan by being still. Starved yeasts form dormant spores that wake‐up (germinate) when nutrients reappear but cannot germinate (die) after some time. What sets their lifespans and how they age are open questions because what processes occur—and by how much—within each dormant spore remains unclear. With single‐cell‐level measurements, we discovered how dormant yeast spores age and die: spores have a quantifiable gene‐expressing ability during dormancy that decreases over days to months until it vanishes, causing death. Specifically, each spore has a different probability of germinating that decreases because its ability to—without nutrients—express genes decreases, as revealed by a synthetic circuit that forces GFP expression during dormancy. Decreasing amounts of molecules required for gene expression—including RNA polymerases—decreases gene‐expressing ability which then decreases chances of germinating. Spores gradually lose these molecules because they are produced too slowly compared with their degradations, causing gene‐expressing ability to eventually vanish and, thus, death. Our work provides a systems‐level view of dormancy‐to‐death transition.
topic ageing
dormancy
gene expression
germination
yeast spores
url https://doi.org/10.15252/msb.20199245
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