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Noise in a phosphorelay drives stochastic entry into sporulation in Bacillus subtilis

机译:磷泥中的噪声驱使枯草芽孢杆菌随机进入孢子形成

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摘要

Entry into sporulation in Bacillus subtilis is governed by a phosphorelay in which phosphoryl groups from a histidine kinase are successively transferred via relay proteins to the response regulator Spo0A. Spo0A~P, in turn, sets in motion events that lead to asymmetric division and activation of the cell‐specific transcription factor σF, a hallmark for entry into sporulation. Here, we have used a microfluidics‐based platform to investigate the activation of Spo0A and σF in individual cells held under constant, sporulation‐inducing conditions. The principal conclusions were that: (i) activation of σF occurs with an approximately constant probability after adaptation to conditions of nutrient limitation; (ii) activation of σF is tightly correlated with, and preceded by, Spo0A~P reaching a high threshold level; (iii) activation of Spo0A takes place abruptly just prior to asymmetric division; and (iv) the primary source of noise in the activation of Spo0A is the phosphorelay. We propose that cells exhibit a constant probability of attaining a high threshold level of Spo0A~P due to fluctuations in the flux of phosphoryl groups through the phosphorelay.
机译:枯草芽孢杆菌进入孢子形成的过程受磷光作用的控制,其中来自组氨酸激酶的磷酰基通过接力蛋白相继转移至响应调节剂Spo0A。反过来,Spo0A〜P引发运动事件,导致不对称分裂并激活细胞特异性转录因子σ F ,这是进入孢子形成的标志。在这里,我们使用了基于微流体的平台来研究在恒定的诱导芽孢形成的条件下单个细胞中Spo0A和σ F 的激活。主要结论是:(i)适应营养限制条件后,σ F 的激活以大约恒定的概率发生; (ii)σ F 的激活与Spo0A〜P达到高阈值水平紧密相关,并且先于Spo0A〜P达到高阈值水平; (iii)Spo0A的激活在不对称分裂之前突然发生; (iv)激活Spo0A的主要噪声源是磷尘。我们提出,由于通过磷灰泥的磷酰基通量的波动,细胞表现出恒定的概率达到Spo0A〜P的高阈值水平。

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