肠道菌群
粪便
微生物群
炎症
蛋白质组
钙蛋白酶
代谢综合征
生物
碳水化合物代谢
肥胖
内科学
免疫学
内分泌学
微生物学
基因组
生物化学
医学
生物信息学
炎症性肠病
疾病
基因
作者
Ronald Biemann,Enrico Buß,Dirk Benndorf,Theresa Lehmann,Kay Schallert,Sebastian Püttker,Udo Reichl,Berend Isermann,Jochen G. Schneider,Gunter Saake,Robert Heyer
出处
期刊:Biomolecules
[Multidisciplinary Digital Publishing Institute]
日期:2021-05-12
卷期号:11 (5): 726-726
被引量:22
摘要
Gut microbiota-mediated inflammation promotes obesity-associated low-grade inflammation, which represents a hallmark of metabolic syndrome. To investigate if lifestyle-induced weight loss (WL) may modulate the gut microbiome composition and its interaction with the host on a functional level, we analyzed the fecal metaproteome of 33 individuals with metabolic syndrome in a longitudinal study before and after lifestyle-induced WL in a well-defined cohort. The 6-month WL intervention resulted in reduced BMI (−13.7%), improved insulin sensitivity (HOMA-IR, −46.1%), and reduced levels of circulating hsCRP (−39.9%), indicating metabolic syndrome reversal. The metaprotein spectra revealed a decrease of human proteins associated with gut inflammation. Taxonomic analysis revealed only minor changes in the bacterial composition with an increase of the families Desulfovibrionaceae, Leptospiraceae, Syntrophomonadaceae, Thermotogaceae and Verrucomicrobiaceae. Yet we detected an increased abundance of microbial metaprotein spectra that suggest an enhanced hydrolysis of complex carbohydrates. Hence, lifestyle-induced WL was associated with reduced gut inflammation and functional changes of human and microbial enzymes for carbohydrate hydrolysis while the taxonomic composition of the gut microbiome remained almost stable. The metaproteomics workflow has proven to be a suitable method for monitoring inflammatory changes in the fecal metaproteome.
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