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首页> 外文期刊>Journal of Pathology: Journal of the Pathological Society of Great Britain and Ireland >Location, location, location! the reality of life for an intestinal stem cell in the crypt
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Location, location, location! the reality of life for an intestinal stem cell in the crypt

机译:位置,位置,位置!隐窝中肠道干细胞的生命现实

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The intestinal crypt has become the archetypal system to understand stem cell behaviour in vivo. Advances in lineage-tracing technology have identified rapidly cycling stem cells at the crypt base with prominent expression of 'marker' genes such as Lgr5. Elegant quantitative analysis of lineage-tracing data has shown that each stem cell within the crypt is in continual neutral competition with the others in order to retain its place in the niche and so prevent differentiation into a specialized lineage. Accordingly, it appears that the regulation of the stem cell pool occurs primarily at the level of the stem cell population, as a simple consequence of competition for the limited space within the niche. However, contradictory data showing that cells located away from the crypt base niche can also sometimes function as stem cells has challenged the notion that stemness is fundamentally cell-extrinsic. Writing in Nature, Ritsma and colleagues have resolved this debate by performing in vivo live-imaging of the crypt base. By tracking individual stem cells over time, they showed that the relative positioning of the cell within the niche stochastically regulates its fate. Stem cells located in close proximity to the crypt base were more likely to persist long-term, but peripheral cells could sometimes move into privileged crypt-base positions. Thus, while many cells within the crypt have stem cell potential, only cells lucky enough to reside in the 'Goldilocks zone' behave as functional stem cells in the long term. The hunt for intestinal stem cells is over: the stem cells are simply found in their niche.
机译:肠道隐窝已成为了解体内干细胞行为的原型系统。沿袭追踪技术的进步已经确定了隐窝基部快速循环的干细胞,其中带有“标记”基因(例如Lgr5)的突出表达。沿袭追踪数据的优雅定量分析表明,隐窝内的每个干细胞都与其他干细胞处于持续中立竞争状态,以保留其在小生境中的位置,从而防止分化为专门的沿袭。因此,似乎干细胞池的调节主要发生在干细胞群体的水平上,这是竞争利基空间有限的简单结果。然而,相反的数据表明远离隐窝基位的细胞有时也可以作为干细胞发挥作用,这挑战了干性从根本上说是细胞外源性的观念。 Ritsma及其同事在《自然》杂志上撰文解决了这一争论,方法是对隐窝进行体内活体成像。通过追踪随时间变化的单个干细胞,他们显示出细胞在小生境中的相对位置随机地调节了其命运。靠近隐窝基底部的干细胞更可能长期存在,但外围细胞有时可能会移入特权隐窝基位置。因此,尽管隐窝内的许多细胞具有干细胞潜能,但从长远来看,只有幸运的细胞能够幸运地驻留在“金锁区”。对肠道干细胞的搜寻已经结束:干细胞只是在它们的利基中发现。

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