2010
DOI: 10.1126/science.1196236
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Intestinal Stem Cell Replacement Follows a Pattern of Neutral Drift

Abstract: With the capacity for rapid self-renewal and regeneration, the intestinal epithelium is stereotypical of stem cell-supported tissues. Yet the pattern of stem cell turnover remains in question. Applying analytical methods from population dynamics and statistical physics to an inducible genetic labeling system, we showed that clone size distributions conform to a distinctive scaling behavior at short times. This result demonstrates that intestinal stem cells form an equipotent population in which the loss of a s… Show more

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Cited by 591 publications
(674 citation statements)
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“…Both would be long lived, give rise to each other, insuring the constancy of the population by a sophisticated retrocontrol (that is, reversible phenotypes; Li and Clevers, 2010). Such a dynamic equilibrium between stem cells has also been demonstrated in intestinal crypts (Lopez-Garcia et al, 2010;Snippert et al, 2010).…”
Section: Csc-tpc Quiescent or Proliferative?mentioning
confidence: 99%
“…Both would be long lived, give rise to each other, insuring the constancy of the population by a sophisticated retrocontrol (that is, reversible phenotypes; Li and Clevers, 2010). Such a dynamic equilibrium between stem cells has also been demonstrated in intestinal crypts (Lopez-Garcia et al, 2010;Snippert et al, 2010).…”
Section: Csc-tpc Quiescent or Proliferative?mentioning
confidence: 99%
“…Specific localization of human leucine-rich repeat containing G protein 5 (LGR5) mRNA was accomplished by in situ hybridization using an antisense riboprobe synthesized with SP6 RNA polymerase using 35 S-UTP and appropriate tissue and experimental controls as previously described. 25 7…”
Section: In Situ Hybridizationmentioning
confidence: 99%
“…Elegant work by the Winton and Clevers groups has shown that murine intestinal stem cells form an equipotent population that undergoes stochastic clone extinction, compensated by expansion and replacement by a neighbouring cell. This random enlargement and contraction of clones, known as neutral drift dynamics, can lead to stochastic clonal extinction or niche succession, where one clone expands to fill the entire niche 31, 32. Similar neutral drift dynamics are seen in human colon using mtDNA mutations as clonal markers 33.…”
Section: Stem Cell Dynamics In Homeostasismentioning
confidence: 91%