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Metabolites Produced by the Oral Commensal Bacterium Corynebacterium durum Extend the Lifespan of Caenorhabditis elegans via SIR-2.1 Overexpression.


ABSTRACT: Human microbiota is heavily involved in host health, including the aging process. Based on the hypothesis that the human microbiota manipulates host aging via the production of chemical messengers, lifespan-extending activities of the metabolites produced by the oral commensal bacterium Corynebacterium durum and derivatives thereof were evaluated using the model organism Caenorhabditis elegans. Chemical investigation of the acetone extract of a C. durum culture led to the identification of monoamines and N-acetyl monoamines as major metabolites. Phenethylamine and N-acetylphenethylamine induced a potent and dose-dependent increase of the C. elegans lifespan, up to 21.6% and 19.9%, respectively. A mechanistic study revealed that the induction of SIR-2.1, a highly conserved protein associated with the regulation of lifespan, was responsible for the observed increased longevity.

SUBMITTER: Kim JH 

PROVIDER: S-EPMC7139712 | biostudies-literature | 2020 Mar

REPOSITORIES: biostudies-literature

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Metabolites Produced by the Oral Commensal Bacterium <i>Corynebacterium durum</i> Extend the Lifespan of <i>Caenorhabditis elegans</i> via SIR-2.1 Overexpression.

Kim Jun Hyeong JH   Bang In Hyuk IH   Noh Yun Jeong YJ   Kim Dae Keun DK   Bae Eun Ju EJ   Hwang In Hyun IH  

International journal of molecular sciences 20200323 6


Human microbiota is heavily involved in host health, including the aging process. Based on the hypothesis that the human microbiota manipulates host aging via the production of chemical messengers, lifespan-extending activities of the metabolites produced by the oral commensal bacterium <i>Corynebacterium durum</i> and derivatives thereof were evaluated using the model organism <i>Caenorhabditis elegans</i>. Chemical investigation of the acetone extract of a <i>C. durum</i> culture led to the id  ...[more]

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