Morgridge Institute for Research, Madison, Wisconsin, USA; Department of Biomolecular Chemistry, University of Wisconsin-Madison, Madison, Wisconsin, USA; National Center for Quantitative Biology of Complex Systems, Madison, Wisconsin, USA.
Department of Biomolecular Chemistry, University of Wisconsin-Madison, Madison, Wisconsin, USA.
Mol Cell Proteomics. 2021;20:100126. doi: 10.1016/j.mcpro.2021.100126. Epub 2021 Jul 29.
Oral microbiome influences human health, specifically prediabetes and type 2 diabetes (Pre-DM/DM) and periodontal diseases (PDs), through complex microbial interactions. To explore these relations, we performed 16S rDNA sequencing, metabolomics, lipidomics, and proteomics analyses on supragingival dental plaque collected from individuals with Pre-DM/DM (n = 39), Pre-DM/DM and PD (n = 37), PD alone (n = 11), or neither (n = 10). We identified on average 2790 operational taxonomic units and 2025 microbial and host proteins per sample and quantified 110 metabolites and 415 lipids. Plaque samples from Pre-DM/DM patients contained higher abundance of Fusobacterium and Tannerella than plaques from metabolically healthy patients. Phosphatidylcholines, plasmenyl phosphatidylcholines, ceramides containing non-OH fatty acids, and host proteins related to actin filament rearrangement were elevated in plaques from PD versus non-PD samples. Cross-omic correlation analysis enabled the detection of a strong association between Lautropia and monomethyl phosphatidylethanolamine (PE-NMe), which is striking because synthesis of PE-NMe is uncommon in oral bacteria. Lipidomics analysis of in vitro cultures of Lautropia mirabilis confirmed the synthesis of PE-NMe by the bacteria. This comprehensive analysis revealed a novel microbial metabolic pathway and significant associations of host-derived proteins with PD.
口腔微生物组通过复杂的微生物相互作用影响人类健康,特别是糖尿病前期和 2 型糖尿病(Pre-DM/DM)和牙周病(PDs)。为了探索这些关系,我们对来自 Pre-DM/DM(n=39)、Pre-DM/DM 和 PD(n=37)、仅 PD(n=11)或两者均无(n=10)个体的龈上牙菌斑进行了 16S rDNA 测序、代谢组学、脂质组学和蛋白质组学分析。我们平均每个样本鉴定出 2790 个操作分类单元和 2025 种微生物和宿主蛋白,并定量了 110 种代谢物和 415 种脂质。与代谢健康患者的牙菌斑相比,Pre-DM/DM 患者的牙菌斑中丰度更高的 Fusobacterium 和 Tannerella。与非 PD 样本相比,来自 PD 样本的磷脂酰胆碱、血浆磷脂酰胆碱、含有非 OH 脂肪酸的神经酰胺和与肌动蛋白丝重排相关的宿主蛋白升高。跨组学相关性分析检测到 Lautropia 和单甲基磷脂酰乙醇胺(PE-NMe)之间存在很强的关联,这很引人注目,因为 PE-NMe 的合成在口腔细菌中并不常见。Lautropia mirabilis 的体外培养物的脂质组学分析证实了细菌合成了 PE-NMe。这项综合分析揭示了一种新的微生物代谢途径和宿主来源的蛋白质与 PD 的显著关联。