代谢组
微生物群
生物
细菌
谷氨酰胺
肠道菌群
微生物学
多发性骨髓瘤
免疫学
代谢组学
生物化学
生物信息学
遗传学
氨基酸
作者
Xingxing Jian,Yinghong Zhu,Jing Wang,Yihui Wang,Qian Lei,Jiliang Xia,Yongjun Guan,Jingyu Zhang,Jiaojiao Guo,Yanjuan He,Sheng Wang,Jian Li,Jingchao Lin,Mingming Su,Guancheng Li,Minghua Wu,Lugui Qiu,Juanjuan Xiang,Lu Xie,Jia Wang,Wen Zhou
出处
期刊:Microbiome
[Springer Nature]
日期:2020-05-28
卷期号:8 (1)
被引量:94
标识
DOI:10.1186/s40168-020-00854-5
摘要
Abstract Background Gut microbiome alterations are closely related to human health and linked to a variety of diseases. Although great efforts have been made to understand the risk factors for multiple myeloma (MM), little is known about the role of the gut microbiome and alterations of its metabolic functions in the development of MM. Results Here, in a cohort of newly diagnosed patients with MM and healthy controls (HCs), significant differences in metagenomic composition were discovered, for the first time, with higher bacterial diversity in MM. Specifically, nitrogen-recycling bacteria such as Klebsiella and Streptococcus were significantly enriched in MM. Also, the bacteria enriched in MM were significantly correlated with the host metabolome, suggesting strong metabolic interactions between microbes and the host. In addition, the MM-enriched bacteria likely result from the regulation of urea nitrogen accumulated during MM progression. Furthermore, by performing fecal microbiota transplantation (FMT) into 5TGM1 mice, we proposed a mechanistic explanation for the interaction between MM-enriched bacteria and MM progression via recycling urea nitrogen. Further experiments validated that Klebsiella pneumoniae promoted MM progression via de novo synthesis of glutamine in mice and that the mice fed with glutamine-deficient diet exhibited slower MM progression. Conclusions Overall, our findings unveil a novel function of the altered gut microbiome in accelerating the malignant progression of MM and open new avenues for novel treatment strategies via manipulation of the intestinal microbiota of MM patients.
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