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Distributed and dynamic intracellular organization of extracellular information

机译:胞外信息的分布式动态胞内组织

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摘要

Although cells respond specifically to environments, how environmental identity is encoded intracellularly is not understood. Here, we study this organization of information in budding yeast by estimating the mutual information between environmental transitions and the dynamics of nuclear translocation for 10 transcription factors. Our method of estimation is general, scalable, and based on decoding from single cells. The dynamics of the transcription factors are necessary to encode the highest amounts of extracellular information, and we show that information is transduced through two channels: Generalists (Msn2/4, Tod6 and Dot6, Maf1, and Sfp1) can encode the nature of multiple stresses, but only if stress is high; specialists (Hog1, Yap1, and Mig1/2) encode one particular stress, but do so more quickly and for a wider range of magnitudes. In particular, Dot6 encodes almost as much information as Msn2, the master regulator of the environmental stress response. Each transcription factor reports differently, and it is only their collective behavior that distinguishes between multiple environmental states. Changes in the dynamics of the localization of transcription factors thus constitute a precise, distributed internal representation of extracellular change. We predict that such multidimensional representations are common in cellular decision-making.
机译:尽管细胞对环境有特异性反应,但如何识别细胞内的环境同一性尚不清楚。在这里,我们通过估计10种转录因子的环境转变与核易位动力学之间的相互信息来研究发芽酵母中的这种信息组织。我们的估算方法是通用的,可扩展的,并且基于单个单元的解码。转录因子的动力学是编码最多的细胞外信息所必需的,并且我们显示信息是通过两个途径进行转导的:通才(Msn2 / 4,Tod6和Dot6,Maf1和Sfp1)可以编码多种胁迫的性质,但前提是压力很高;专家(Hog1,Yap1和Mig1 / 2)编码一个特定的应力,但编码速度更快,幅度范围更广。特别是,Dot6编码的信息几乎与环境压力响应的主要调节器Msn2一样。每个转录因子的报告方式都不相同,只有它们的集体行为才能区分多个环境状态。因此,转录因子定位动力学的变化构成了细胞外变化的精确,分布式内部表示。我们预测这种多维表示形式在细胞决策中很常见。

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