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首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Modeling a synthetic multicellular clock: repressilators coupled by quorum sensing.
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Modeling a synthetic multicellular clock: repressilators coupled by quorum sensing.

机译:模拟合成的多细胞时钟:通过定额感应耦合的再加压器。

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摘要

Diverse biochemical rhythms are generated by thousands of cellular oscillators that somehow manage to operate synchronously. In fields ranging from circadian biology to endocrinology, it remains an exciting challenge to understand how collective rhythms emerge in multicellular structures. Using mathematical and computational modeling, we study the effect of coupling through intercell signaling in a population of Escherichia coli cells expressing a synthetic biological clock. Our results predict that a diverse and noisy community of such genetic oscillators interacting through a quorum-sensing mechanism should self-synchronize in a robust way, leading to a substantially improved global rhythmicity in the system. As such, the particular system of coupled genetic oscillators considered here might be a good candidate to provide the first quantitative example of a synchronization transition in a population of biological oscillators.
机译:成千上万的细胞振荡器产生了不同的生化节律,它们以某种方式设法同步运行。在从昼夜节律生物学到内分泌学的各个领域,了解集体节律如何在多细胞结构中出现仍然是一个令人兴奋的挑战。使用数学和计算模型,我们研究了通过细胞间信号传导在表达合成生物钟的大肠杆菌细胞群体中的耦合作用。我们的结果预测,通过群体感应机制相互作用的这种遗传振荡器的多样性和嘈杂社区应该以一种健壮的方式自同步,从而导致系统中全局节奏的显着改善。这样,此处考虑的耦合遗传振荡器的特定系统可能是提供生物振荡器群体中同步跃迁的第一个定量示例的良好候选者。

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