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Clocking Out: Modeling Phage-Induced Lysis of Escherichia coli

机译:提出:建模噬菌体诱导的大肠埃希氏菌的裂解

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Phage λ lyses the host Escherichia coli at a precisely scheduled time after induction. Lysis timing is determined by the action of phage holins, which are small proteins that induce hole formation in the bacterium's cytoplasmic membrane. We present a two-stage nucleation model of lysis timing, with the nucleation of condensed holin rafts on the inner membrane followed by the nucleation of a hole within those rafts. The nucleation of holin rafts accounts for most of the delay of lysis after induction. Our simulations of this model recover the accurate lysis timing seen experimentally and show that the timing accuracy is optimal. An enhanced holin-holin interaction is needed in our model to recover experimental lysis delays after the application of membrane poison, and such early triggering of lysis is possible only after the inner membrane is supersaturated with holin. Antiholin reduces the delay between membrane depolarization and lysis and leads to an earlier time after which triggered lysis is possible.
机译:噬菌体λ在诱导后的精确计划时间内裂解宿主大肠杆菌。裂解时间由噬菌体holins的作用决定,噬菌体holins是诱导细菌细胞质膜中孔形成的小蛋白。我们提出了裂解时间的两阶段成核模型,内膜上浓缩的霍林筏成核,然后在这些筏内的孔成核。诱导后裂解的大部分延迟是霍林筏的成核作用。我们对该模型的仿真恢复了实验中观察到的准确裂解时间,并表明定时精度是最佳的。在我们的模型中,需要增强的霍林-霍林相互作用,以恢复施加膜毒物后的实验裂解延迟,并且只有在内膜被霍林过饱和后,裂解的这种早期触发才有可能。 Antiholin减少了膜去极化和裂解之间的延迟,并导致更早的时间,之后触发裂解是可能的。

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