Akkermansia muciniphila, a mucophilic member of the gut microbiota, protects its host against metabolic disorders. Because it is genetically intractable, the mechanisms underlying mucin metabolism, gut colonization and its impact on host physiology are not well understood. Here we developed and applied transposon mutagenesis to identify genes important for intestinal colonization and for the use of mucin. An analysis of transposon mutants indicated that de novo biosynthesis of amino acids was required for A. muciniphila growth on mucin medium and that many glycoside hydrolases are redundant. We observed that mucin degradation products accumulate in internal compartments within bacteria in a process that requires genes encoding pili and a periplasmic protein complex, which we term mucin utilization locus (MUL) genes. We determined that MUL genes were required for intestinal colonization in mice but only when competing with other microbes. In germ-free mice, MUL genes were required for A. muciniphila to repress genes important for cholesterol biosynthesis in the colon. Our genetic system for A. muciniphila provides an important tool with which to uncover molecular links between the metabolism of mucins, regulation of lipid homeostasis and potential probiotic activities.
A genetic system for Akkermansia muciniphila reveals a role for mucin foraging in gut colonization and host sterol biosynthesis gene expression.
对粘液嗜血菌的遗传系统揭示了粘液觅食在肠道定植和宿主甾醇生物合成基因表达中的作用
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作者:Davey Lauren E, Malkus Per N, Villa Max, Dolat Lee, Holmes Zachary C, Letourneau Jeff, Ansaldo Eduard, David Lawrence A, Barton Gregory M, Valdivia Raphael H
| 期刊: | Nature Microbiology | 影响因子: | 19.400 |
| 时间: | 2023 | 起止号: | 2023 Aug;8(8):1450-1467 |
| doi: | 10.1038/s41564-023-01407-w | 研究方向: | 其它 |
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