Proliferation/Quiescence: When to start? Where to stop? What to stock?
<p>Abstract</p> <p>The cell cycle is a tightly controlled series of events that ultimately lead to cell division. The literature deciphering the molecular processes involved in regulating the consecutive cell cycle steps is colossal. By contrast, much less is known about non-dividi...
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doaj-f0ab8783a67a4a86878282cfd20885502020-11-25T01:30:19ZengBMCCell Division1747-10282011-12-01612010.1186/1747-1028-6-20Proliferation/Quiescence: When to start? Where to stop? What to stock?Daignan-Fornier BertrandSagot Isabelle<p>Abstract</p> <p>The cell cycle is a tightly controlled series of events that ultimately lead to cell division. The literature deciphering the molecular processes involved in regulating the consecutive cell cycle steps is colossal. By contrast, much less is known about non-dividing cellular states, even if they concern the vast majority of cells, from prokaryotes to multi-cellular organisms. Indeed, cells decide to enter the division cycle only if conditions are favourable. Otherwise they may enter quiescence, a reversible non-dividing cellular state. Recent studies in yeast have shed new light on the transition between proliferation and quiescence, re-questioning the notion of cell cycle commitment. They also indicate a predominant role for cellular metabolic status as a major regulator of quiescence establishment and exit. Additionally, a growing body of evidence indicates that environmental conditions, and notably the availability of various nutrients, by impinging on specific metabolic routes, directly regulate specific cellular re-organization that occurs upon proliferation/quiescence transitions.</p> http://www.celldiv.com/content/6/1/20Quiescence<it>Saccharomyces cerevisiae</it>Start pointRestriction pointstarvationcell cyclemetabolism |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Daignan-Fornier Bertrand Sagot Isabelle |
spellingShingle |
Daignan-Fornier Bertrand Sagot Isabelle Proliferation/Quiescence: When to start? Where to stop? What to stock? Cell Division Quiescence <it>Saccharomyces cerevisiae</it> Start point Restriction point starvation cell cycle metabolism |
author_facet |
Daignan-Fornier Bertrand Sagot Isabelle |
author_sort |
Daignan-Fornier Bertrand |
title |
Proliferation/Quiescence: When to start? Where to stop? What to stock? |
title_short |
Proliferation/Quiescence: When to start? Where to stop? What to stock? |
title_full |
Proliferation/Quiescence: When to start? Where to stop? What to stock? |
title_fullStr |
Proliferation/Quiescence: When to start? Where to stop? What to stock? |
title_full_unstemmed |
Proliferation/Quiescence: When to start? Where to stop? What to stock? |
title_sort |
proliferation/quiescence: when to start? where to stop? what to stock? |
publisher |
BMC |
series |
Cell Division |
issn |
1747-1028 |
publishDate |
2011-12-01 |
description |
<p>Abstract</p> <p>The cell cycle is a tightly controlled series of events that ultimately lead to cell division. The literature deciphering the molecular processes involved in regulating the consecutive cell cycle steps is colossal. By contrast, much less is known about non-dividing cellular states, even if they concern the vast majority of cells, from prokaryotes to multi-cellular organisms. Indeed, cells decide to enter the division cycle only if conditions are favourable. Otherwise they may enter quiescence, a reversible non-dividing cellular state. Recent studies in yeast have shed new light on the transition between proliferation and quiescence, re-questioning the notion of cell cycle commitment. They also indicate a predominant role for cellular metabolic status as a major regulator of quiescence establishment and exit. Additionally, a growing body of evidence indicates that environmental conditions, and notably the availability of various nutrients, by impinging on specific metabolic routes, directly regulate specific cellular re-organization that occurs upon proliferation/quiescence transitions.</p> |
topic |
Quiescence <it>Saccharomyces cerevisiae</it> Start point Restriction point starvation cell cycle metabolism |
url |
http://www.celldiv.com/content/6/1/20 |
work_keys_str_mv |
AT daignanfornierbertrand proliferationquiescencewhentostartwheretostopwhattostock AT sagotisabelle proliferationquiescencewhentostartwheretostopwhattostock |
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1725092153826213888 |