Literature DB >> 33225575

Male castration increases adiposity via small intestinal microbial alterations.

Tae Woong Whon1, Hyun Sik Kim1, Na-Ri Shin1, Eun Sung Jung2, Euon Jung Tak1, Hojun Sung1, Mi-Ja Jung1, Yun-Seok Jeong1, Dong-Wook Hyun1, Pil Soo Kim1, Yu Kyung Jang2, Choong Hwan Lee2, Jin-Woo Bae1.   

Abstract

Castration of young males is widely used in the cattle industry to improve meat quality, but the mechanism linking hypogonadism and host metabolism is not clear. Here, we use metataxonomic and metabolomic approaches to evaluate the intestinal microbiota and host metabolism in male, castrated male (CtM), and female cattle. After pubescence, the CtM cattle harbor distinct ileal microbiota dominated by the family Peptostreptococcaceae and exhibit distinct serum and muscle amino acid profiles (i.e., highly abundant branched-chain amino acids), with increased extra- and intramuscular fat storage. We also evaluate the causative factor(s) that underpin the alteration of the intestinal microbiota and host metabolic phenotype in response to hypogonadism. Castration of male mice phenocopies both the intestinal microbial alterations and obese-prone metabolism observed in cattle. Antibiotic treatment and fecal microbiota transplantation experiments in a mouse model confirm that the intestinal microbial alterations associated with hypogonadism are a key contributor to the obese phenotype in the CtM animals. Collectively, targeting the gut microbiota is a potential therapeutic strategy for the treatment of both hypogonadism and obesity.
© 2020 The Authors.

Entities:  

Keywords:  zzm321990Peptostreptococcaceaezzm321990; branched-chain amino acids; hypogonadism; ileal microbiota; intramuscular fat

Mesh:

Year:  2020        PMID: 33225575      PMCID: PMC7788444          DOI: 10.15252/embr.202050663

Source DB:  PubMed          Journal:  EMBO Rep        ISSN: 1469-221X            Impact factor:   9.071


  53 in total

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