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Optimality in the development of intestinal crypts

机译:肠隐窝发育的最优性

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摘要

Intestinal crypts in mammals are comprised of long-lived stem cells and shorter-lived progenies. These two populations are maintained in specific proportions during adult life. Here, we investigate the design principles governing the dynamics of these proportions during crypt morphogenesis. Using optimal control theory, we show that a proliferation strategy known as a "bang-bang" control minimizes the time to obtain a mature crypt. This strategy consists of a surge of symmetric stem cell divisions, establishing the entire stem cell pool first, followed by a sharp transition to strictly asymmetric stem cell divisions, producing nonstem cells with a delay. We validate these predictions using lineage tracing and single-molecule fluorescence in situ hybridization of intestinal crypts in infant mice, uncovering small crypts that are entirely composed of Lgr5-labeled stem cells, which become a minority as crypts continue to grow. Our approach can be used to uncover similar design principles in other developmental systems.
机译:哺乳动物的肠隐窝由长寿命的干细胞和短寿命的后代组成。在成年期间,这两个人口将保持特定比例。在这里,我们研究隐窝形态发生过程中控制这些比例的动力学的设计原理。使用最佳控制理论,我们证明了一种称为“爆炸式”控制的扩散策略将获得成熟隐窝的时间减至最少。该策略包括大量对称干细胞分裂,首先建立整个干细胞池,然后急剧过渡到严格不对称的干细胞分裂,从而延迟产生非干细胞。我们使用沿袭追踪和幼鼠肠道隐窝的单分子荧光原位杂交验证了这些预测,发现了完全由Lgr5标记的干细胞组成的小型隐窝,随着隐窝的继续生长,这种隐窝成为少数。我们的方法可用于发现其他开发系统中的类似设计原则。

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