Department of Microbiology, Immunology, and Cancer Biology at the Carter Immunology Center, University of Virginia School of Medicine, Charlottesville, Virginia, USA.
Infect Immun. 2023 Jul 18;91(7):e0044222. doi: 10.1128/iai.00442-22. Epub 2023 May 31.
The biology of a cell, whether it is a unicellular organism or part of a multicellular network, is influenced by cell type, temporal changes in cell state, and the cell's environment. Spatial cues play a critical role in the regulation of microbial pathogenesis strategies. Information about where the pathogen is-in a tissue or in proximity to a host cell-regulates gene expression and the compartmentalization of gene products in the microbe and the host. Our understanding of host and pathogen identity has bloomed with the accessibility of transcriptomics and proteomics techniques. A missing piece of the puzzle has been our ability to evaluate global transcript and protein expression in the context of the subcellular niche, primary cell, or native tissue environment during infection. This barrier is now lower with the advent of new spatial omics techniques to understand how location regulates cellular functions. This review will discuss how recent advances in spatial proteomics and transcriptomics approaches can address outstanding questions in microbial pathogenesis.
细胞的生物学特性,无论是单细胞生物还是多细胞网络的一部分,都受到细胞类型、细胞状态的时间变化以及细胞环境的影响。空间线索在调节微生物发病机制策略方面起着关键作用。有关病原体在组织中的位置或接近宿主细胞的信息,调节了基因表达和微生物及宿主中基因产物的区室化。随着转录组学和蛋白质组学技术的普及,我们对宿主和病原体身份的理解有了很大的提高。但在感染过程中,我们还缺乏一个关键部分,即评估亚细胞生态位、原代细胞或天然组织环境中全局转录本和蛋白质表达的能力。随着新的空间组学技术的出现,这种障碍现在已经降低,这些技术可以帮助我们了解位置如何调节细胞功能。这篇综述将讨论空间蛋白质组学和转录组学方法的最新进展如何解决微生物发病机制中的突出问题。