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Metaproteomics reveals functional shifts in microbial and human proteins during a preterm infant gut colonization case

机译:蛋白质组学揭示了早产儿肠道菌落定殖过程中微生物和人类蛋白质的功能转变

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Microbial colonization of the human gastrointestinal tract plays an important role in establishing health and homeostasis. However, the time-dependent functional signatures of microbial and human proteins during early colonization of the gut have yet to be determined. To this end, we employed shotgun proteomics to simultaneously monitor microbial and human proteins in fecal samples from a preterm infant during the first month of life. Microbial community complexity increased over time, with compositional changes that were consistent with previous metagenomic and rRNA gene data. More specifically, the function of the microbial community initially involved biomass growth, protein production, and lipid metabolism, and then switched to more complex metabolic functions, such as carbohydrate metabolism, once the community stabilized and matured. Human proteins detected included those responsible for epithelial barrier function and antimicrobial activity. Some neutrophil-derived proteins increased in abundance early in the study period, suggesting activation of the innate immune system. Likewise, abundances of cytoskeletal and mucin proteins increased later in the time course, suggestive of subsequent adjustment to the increased microbial load. This study provides the first snapshot of coordinated human and microbial protein expression in a preterm infant's gut during early development.
机译:人类胃肠道的微生物定植在建立健康和体内平衡方面起着重要作用。然而,在肠道的早期定殖过程中,微生物和人类蛋白的时间依赖性功能标记尚待确定。为此,我们使用shot弹枪蛋白质组学来同时监测生命第一个月中早产儿粪便样本中的微生物和人类蛋白质。随着时间的推移,微生物群落的复杂性增加,其组成变化与以前的宏基因组学和rRNA基因数据一致。更具体地说,微生物群落的功能最初涉及生物量的增长,蛋白质的生产和脂质代谢,然后一旦群落稳定并成熟,便转变为更复杂的代谢功能,例如碳水化合物的代谢。检测到的人蛋白质包括负责上皮屏障功能和抗菌活性的蛋白质。在研究初期,一些中性粒细胞衍生的蛋白质大量增加,表明先天免疫系统被激活。同样,细胞骨架蛋白和粘蛋白蛋白的丰度在时间过程中后期增加,这表明随后需要对增加的微生物负荷进行调整。这项研究提供了早产婴儿肠道中人类和微生物蛋白质协调表达的第一个快照。

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