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Rational design of memory in eukaryotic cells.

机译:真核细胞中记忆的合理设计。

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摘要

The ability to logically engineer novel cellular functions promises a deeper understanding of biological systems. Here we demonstrate the rational design of cellular memory in yeast that employs autoregulatory transcriptional positive feedback. We built a set of transcriptional activators and quantitatively characterized their effects on gene expression in living cells. Modeling in conjunction with the quantitative characterization of the activator-promoter pairs accurately predicts the behavior of the memory network. This study demonstrates the power of taking advantage of components with measured quantitative parameters to specify eukaryotic regulatory networks with desired properties.
机译:在逻辑上工程化新型细胞功能的能力有望对生物系统有更深入的了解。在这里,我们展示了采用自动调节转录阳性反馈的酵母细胞记忆的合理设计。我们建立了一套转录激活因子,并定量表征了它们对活细胞中基因表达的影响。结合激活剂-促进剂对的定量表征进行建模可准确预测内存网络的行为。这项研究证明了利用具有定量参数的组分来指定具有所需特性的真核调控网络的能力。

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