Circadian metabolic adaptations to infections.

Claudio Costantini, Stefano Brancorsini, Francesco Grignani, Luigina Romani, Marina Maria Bellet
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Abstract

Circadian clocks are biological oscillators that evolved to coordinate rhythms in behaviour and physiology around the 24-hour day. In mammalian tissues, circadian rhythms and metabolism are highly intertwined. The clock machinery controls rhythmic levels of circulating hormones and metabolites, as well as rate-limiting enzymes catalysing biosynthesis or degradation of macromolecules in metabolic tissues, such control being exerted both at the transcriptional and post-transcriptional level. During infections, major metabolic adaptation occurs in mammalian hosts, at the level of both the single immune cell and the whole organism. Under these circumstances, the rhythmic metabolic needs of the host intersect with those of two other players: the pathogen and the microbiota. These three components cooperate or compete to meet their own metabolic demands across the 24 hours. Here, we review findings describing the circadian regulation of the host response to infection, the circadian metabolic adaptations occurring during host-microbiota-pathogen interactions and how such regulation can influence the immune response of the host and, ultimately, its own survival.This article is part of the Theo Murphy meeting issue 'Circadian rhythms in infection and immunity'.

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对感染的昼夜代谢适应。
生物钟是一种生物振荡器,通过进化来协调24小时内的行为和生理节奏。在哺乳动物组织中,昼夜节律和新陈代谢是高度交织在一起的。时钟机制控制循环激素和代谢物的节律水平,以及代谢组织中催化生物合成或大分子降解的限速酶,这种控制在转录和转录后水平上都发挥作用。在感染期间,主要的代谢适应发生在哺乳动物宿主中,在单个免疫细胞和整个生物体的水平上。在这种情况下,宿主有节奏的代谢需要与其他两个参与者的代谢需要相交:病原体和微生物群。这三种成分在24小时内合作或竞争以满足各自的代谢需求。在这里,我们回顾了描述宿主对感染反应的昼夜节律调节的研究结果,宿主-微生物-病原体相互作用期间发生的昼夜节律代谢适应,以及这种调节如何影响宿主的免疫反应,并最终影响宿主自身的生存。这篇文章是西奥·墨菲会议议题“感染和免疫的昼夜节律”的一部分。
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来源期刊
CiteScore
11.80
自引率
1.60%
发文量
365
审稿时长
3 months
期刊介绍: The journal publishes topics across the life sciences. As long as the core subject lies within the biological sciences, some issues may also include content crossing into other areas such as the physical sciences, social sciences, biophysics, policy, economics etc. Issues generally sit within four broad areas (although many issues sit across these areas): Organismal, environmental and evolutionary biology Neuroscience and cognition Cellular, molecular and developmental biology Health and disease.
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