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Mathematical Model for Length Control by the Timing of Substrate Switching in the Type III Secretion System

机译:III型分泌系统中通过基质切换的时间控制长度的数学模型

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摘要

Type III Secretion Systems (T3SS) are complex bacterial structures that provide gram-negative pathogens with a unique virulence mechanism whereby they grow a needle-like structure in order to inject bacterial effector proteins into the cytoplasm of a host cell. Numerous experiments have been performed to understand the structural details of this nanomachine during the past decade. Despite the concerted efforts of molecular and structural biologists, several crucial aspects of the assembly of this structure, such as the regulation of the length of the needle itself, remain unclear. In this work, we used a combination of mathematical and computational techniques to better understand length control based on the timing of substrate switching, which is a possible mechanism for how bacteria ensure that the T3SS needles are neither too short nor too long. In particular, we predicted the form of the needle length distribution based on this mechanism, and found excellent agreement with available experimental data from Salmonella typhimurium with only a single free parameter. Although our findings provide preliminary evidence in support of the substrate switching model, they also make a set of quantitative predictions that, if tested experimentally, would assist in efforts to unambiguously characterize the regulatory mechanisms that control the growth of this crucial virulence factor.
机译:III型分泌系统(T3SS)是复杂的细菌结构,可为革兰氏阴性病原体提供独特的毒力机制,从而使它们生长成针状结构,以便将细菌效应蛋白注入宿主细胞的细胞质中。在过去的十年中,已经进行了许多实验来了解这种纳米机器的结构细节。尽管分子生物学和结构生物学家共同努力,但仍不清楚该结构组装的几个关键方面,例如针本身长度的调节。在这项工作中,我们结合了数学和计算技术,以更好地理解基于基板切换时间的长度控制,这是细菌如何确保T3SS针既不会太短又不会太长的可能机制。尤其是,我们基于此机制预测了针长分布的形式,并发现与鼠伤寒沙门氏菌的可用实验数据(仅有一个自由参数)非常吻合。尽管我们的发现提供了支持底物转换模型的初步证据,但他们也做出了一组定量预测,如果进行实验测试,这些预测将有助于明确表征控制该关键毒力因子生长的调控机制。

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