Lydia Becker Institute of Immunology and Inflammation, University of Manchester, Manchester M13 9PL, UK.
School of Biological Sciences, Faculty of Biology, Medicine and Health, Manchester Academic Health Science Centre, University of Manchester, Manchester M13 9PL, UK.
Sci Immunol. 2022 Sep 2;7(75):eabk2541. doi: 10.1126/sciimmunol.abk2541.
Interactions between the mammalian host and commensal microbiota are enforced through a range of immune responses that confer metabolic benefits and promote tissue health and homeostasis. Immunoglobulin A (IgA) responses directly determine the composition of commensal species that colonize the intestinal tract but require substantial metabolic resources to fuel antibody production by tissue-resident plasma cells. Here, we demonstrate that IgA responses are subject to diurnal regulation over the course of a circadian day. Specifically, the magnitude of IgA secretion, as well as the transcriptome of intestinal IgA plasma cells, was found to exhibit rhythmicity. Oscillatory IgA responses were found to be entrained by time of feeding and were also found to be in part coordinated by the plasma cell-intrinsic circadian clock via deletion of the master clock gene . Moreover, reciprocal interactions between the host and microbiota dictated oscillatory dynamics among the commensal microbial community and its associated transcriptional and metabolic activity in an IgA-dependent manner. Together, our findings suggest that circadian networks comprising intestinal IgA, diet, and the microbiota converge to align circadian biology in the intestinal tract and to ensure host-microbial mutualism.
哺乳动物宿主与共生微生物群之间的相互作用是通过一系列免疫反应来实现的,这些反应赋予了代谢益处,并促进了组织健康和内稳态。免疫球蛋白 A(IgA)反应直接决定了定植在肠道中的共生物种的组成,但需要大量的代谢资源来为组织驻留浆细胞产生抗体提供燃料。在这里,我们证明了 IgA 反应在昼夜周期的过程中受到昼夜节律的调节。具体来说,IgA 分泌的幅度以及肠道 IgA 浆细胞的转录组都表现出节律性。发现振荡的 IgA 反应受到进食时间的影响,并且通过删除主时钟基因 ,发现部分受浆细胞内在生物钟的协调。此外,宿主和微生物群之间的相互作用以 IgA 依赖的方式决定了共生微生物群落及其相关转录和代谢活性的振荡动态。总之,我们的研究结果表明,包括肠道 IgA、饮食和微生物群在内的昼夜网络汇聚在一起,使肠道中的生物钟生物学保持一致,并确保宿主-微生物共生。