Zhu Bokai, Bai Yunhao, Yeo Yao Yu, Lu Xiaowei, Rovira-Clavé Xavier, Chen Han, Yeung Jason, Gerber Georg K, Angelo Mike, Shalek Alex K, Nolan Garry P, Jiang Sizun
Ragon Institute of MGH, MIT, and Harvard, Cambridge, MA, USA.
Broad Institute of MIT and Harvard, Cambridge, MA, USA.
bioRxiv. 2024 Mar 6:2024.03.04.583400. doi: 10.1101/2024.03.04.583400.
The intricate and dynamic interactions between the host immune system and its microbiome constituents undergo dynamic shifts in response to perturbations to the intestinal tissue environment. Our ability to study these events on the systems level is significantly limited by approaches capable of generating simultaneous insights from both host and microbial communities. Here, we introduce Microbiome Cartography (MicroCart), a framework for simultaneous probing of host features and its microbiome across multiple spatial modalities. We demonstrate MicroCart by comprehensively investigating the alterations in both gut host and microbiome components in a murine model of colitis by coupling MicroCart with spatial proteomics, transcriptomics, and glycomics platforms. Our findings reveal a global but systematic transformation in tissue immune responses, encompassing tissue-level remodeling in response to host immune and epithelial cell state perturbations, and bacterial population shifts, localized inflammatory responses, and metabolic process alterations during colitis. MicroCart enables a deep investigation of the intricate interplay between the host tissue and its microbiome with spatial multiomics.
宿主免疫系统与其微生物组成分之间复杂而动态的相互作用会随着肠道组织环境的扰动而发生动态变化。我们在系统层面研究这些事件的能力受到能够同时从宿主和微生物群落中获得见解的方法的显著限制。在此,我们引入了微生物组图谱(MicroCart),这是一个用于跨多种空间模式同时探测宿主特征及其微生物组的框架。我们通过将MicroCart与空间蛋白质组学、转录组学和糖组学平台相结合,全面研究了结肠炎小鼠模型中肠道宿主和微生物组成分的变化,以此展示了MicroCart。我们的研究结果揭示了组织免疫反应的全局性但系统性的转变,包括响应宿主免疫和上皮细胞状态扰动的组织水平重塑,以及结肠炎期间细菌种群变化、局部炎症反应和代谢过程改变。MicroCart能够通过空间多组学深入研究宿主组织与其微生物组之间的复杂相互作用。