A cross‐species analysis of fecal microbiomes in humans and mice reveals similarities and dissimilarities associated with prostate cancer risk

前列腺癌 微生物群 生物 前列腺 癌症 失调 前列腺疾病 癌变 疾病 生理学 医学 生物信息学 癌症研究 内科学 遗传学
作者
Chisato Wakamori,Marco A. De Velasco,Kazuko Sakai,Yurie Kura,Makoto Matsushita,Saizo Fujimoto,Koji Hatano,Norio Nonomura,Kazutoshi Fujita,Kazuto Nishio,Hirotsugu Uemura
出处
期刊:The Prostate [Wiley]
卷期号:84 (15): 1375-1386 被引量:1
标识
DOI:10.1002/pros.24776
摘要

Abstract Background Prostate cancer is a complex disease that develops over time and is influenced by several lifestyle factors that also impact gut microbes. Gut dysbiosis is intricately linked to prostate carcinogenesis, but the precise mechanisms remain poorly understood. Mice are crucial for studying the relationships between gut microbes and prostate cancer, but discovering similarities between humans and mice may aid in elucidating new mechanisms. Methods We used 16s rRNA sequencing data from stool samples of tumor‐bearing prostate‐specific conditional Pten ‐knockout mice, disease‐free wildtype mice, and a human cohort suspected of having prostate cancer to conduct taxonomic and metagenomic profiling. Features were associated with prostate cancer status and low risk (a negative biopsy of Gleason grade <2) or high risk (Gleason grade ≥2) in humans. Results In both humans and mice, community composition differed between individuals with and without prostate cancer. Odoribacter spp. and Desulfovibrio spp. were taxa associated with prostate cancer in mice and humans. Metabolic pathways associated with cofactor and vitamin synthesis were common in mouse and human prostate cancer, including bacterial synthesis of folate (vitamin B9), ubiquinone (CoQ10), phylloquinone (vitamin K1), menaquinone (vitamin K2), and tocopherol (vitamin E). Conclusions Our study provides valuable data that can help bridge the gap between human and mouse microbiomes. Our findings provide evidence to support the notion that certain bacterial‐derived metabolites may promote prostate cancer, as well as a preclinical model that can be used to characterize biological mechanisms and develop preventive interventions.
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