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Decision Making at a Subcellular Level Determines the Outcome of Bacteriophage Infection

机译:亚细胞水平的决策决定了噬菌体感染的结果。

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When the process of cell-fate determination is examined at single-cell resolution, it is often observed that individual cells undergo different fates even when subject to identical conditions. This "noisy" phenotype is usually attributed to the inherent stochasticity of chemical reactions in the cell. Here we demonstrate how the observed single-cell heterogeneity can be explained by a cascade of decisions occurring at the subcellular level. We follow the postinfection decision in bacteriophage lambda at single-virus resolution, and show that a choice between lysis and lysogeny is first made at the level of the individual virus. The decisions by all viruses infecting a single cell are then integrated in a precise (noise-free) way, such that only a unanimous vote by all viruses leads to the establishment of lysogeny. By detecting and integrating over the subcellular "hidden variables," we are able to predict the level of noise measured at the single-cell level.
机译:当以单细胞分辨率检查细胞命运的过程时,经常观察到即使在相同条件下单个细胞也会经历不同的命运。该“嘈杂”表型通常归因于细胞中化学反应的固有随机性。在这里,我们证明了观察到的单细胞异质性如何可以通过在亚细胞水平上发生的一系列决定来解释。我们按照单病毒分辨率遵循噬菌体λ的感染后决定,并表明首先在单个病毒的水平上进行裂解和溶原性的选择。然后,所有感染单个细胞的病毒的决策都以精确(无噪声)的方式整合在一起,这样,所有病毒的一致投票就可以导致溶源性的建立。通过检测和整合亚细胞的“隐藏变量”,我们能够预测在单细胞水平上测得的噪声水平。

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