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不确定性和负反馈环在诱导免疫防御进化中的作用。

The role of uncertainty and negative feedback loops in the evolution of induced immune defenses.

机构信息

Department of Biology and Biochemistry, University of Houston, Houston, TX 77204, USA.

School of Mathematics and Statistics, University of St Andrews, St Andrews KY16 9AJ, UK.

出版信息

G3 (Bethesda). 2024 Oct 7;14(10). doi: 10.1093/g3journal/jkae182.

Abstract

Organisms use constitutive or induced defenses against pathogens and other external threats. Constitutive defenses are constantly on, whereas induced defenses are activated when needed. Each of these strategies has costs and benefits, which can affect the type of defense that evolves in response to pathogens. In addition, induced defenses are usually regulated by multiple negative feedback mechanisms that prevent overactivation of the immune response. However, it is unclear how negative feedback affects the costs, benefits, and evolution of induced responses. To address this gap, we developed a mechanistic model of the well-characterized Drosophila melanogaster immune signaling network that includes 3 separate mechanisms of negative feedback as a representative of the widespread phenomenon of multilevel regulation of induced responses. We show that, under stochastic fly-bacteria encounters, an induced defense is favored when bacterial encounters are rare or uncertain, but in ways that depend on the bacterial proliferation rate. Our model also predicts that the specific negative regulators that optimize the induced response depend on the bacterial proliferation rate, linking negative feedback mechanisms to the factors that favor induction.

摘要

生物利用组成型或诱导防御来对抗病原体和其他外部威胁。组成型防御持续存在,而诱导防御则在需要时被激活。这些策略中的每一种都有成本和收益,这会影响针对病原体进化出的防御类型。此外,诱导防御通常受到多个负反馈机制的调节,以防止免疫反应过度激活。然而,目前尚不清楚负反馈如何影响诱导反应的成本、收益和进化。为了弥补这一空白,我们开发了一个机制模型,该模型以广泛存在的诱导反应多层次调控现象为代表,包括 3 种独立的负反馈机制,用于研究特征明确的黑腹果蝇免疫信号网络。我们表明,在随机的果蝇-细菌接触中,当细菌接触稀少或不确定时,诱导防御是有利的,但有利的方式取决于细菌增殖率。我们的模型还预测,优化诱导反应的特定负调节因子取决于细菌增殖率,将负反馈机制与有利于诱导的因素联系起来。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/caed/11457078/2c7f4b5fe294/jkae182f1.jpg

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