Dipeptide metabolite, glutamyl-glutamate mediates microbe-host interaction to boost spermatogenesis

二肽代谢产物谷氨酰谷氨酸介导微生物-宿主相互作用,从而促进精子发生

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作者:Balázs Juhász ,Krisztina Horváth ,Dániel Kuti ,Jian Shen ,Annette Feuchtinger ,Chaoyang Zhang ,Ildikó Bata-Vidács ,István Nagy ,József Kukolya ,Michael Witting ,Mária Baranyi ,Szilamér Ferenczi ,Axel Walch ,Na Sun ,Krisztina J Kovács

Abstract

The decrease in sperm count and infertility is a global issue that remains unresolved. By screening environmental bacterial isolates, we have found that a novel lactic acid bacterium, Lactiplantibacillus plantarum SNI3, increased testis size, testosterone levels, sperm count, sexual activity and fertility in mice that have consumed the bacteria for four weeks. The abundance of L. plantarum in the colon microbiome was positively associated with sperm count. Fecal microbiota transplantation (FMT) from L. plantarum SNI3-dosed mice improved testicular functions in microbiome-attenuated recipient animals. To identify mediators that confer pro-reproductive effects on the host, untargeted in situ mass spectrometry metabolomics was performed on testis samples of L. plantarum SNI3-treated and control mice. Enrichment pathway analysis revealed several perturbed metabolic pathways in the testis of treated mice. Within the testis, a dipeptide, glutamyl-glutamate (GluGlu) was the most upregulated metabolite following L. plantarum SNI3 administration. To validate the pro-reproductive feature of GluGlu, systemic and local injections of the dipeptide have been performed. γ-GluGlu increased sperm count but had no effect on testosterone. These findings highlight the role of γ-GluGlu in mediating spermatogenetic effects of L. plantarum on the male mouse host and -following relevant human clinical trials- may provide future tools for treating certain forms of male infertility.

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