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1.
FEBS Lett ; 597(17): 2196-2220, 2023 09.
Artigo em Inglês | MEDLINE | ID: mdl-37463842

RESUMO

The nicotinamide adenine dinucleotide (NAD+ ) precursor nicotinamide mononucleotide (NMN) is a proposed therapy for age-related disease, whereby it is assumed that NMN is incorporated into NAD+ through the canonical recycling pathway. During oral delivery, NMN is exposed to the gut microbiome, which could modify the NAD+ metabolome through enzyme activities not present in the mammalian host. We show that orally delivered NMN can undergo deamidation and incorporation in mammalian tissue via the de novo pathway, which is reduced in animals treated with antibiotics to ablate the gut microbiome. Antibiotics increased the availability of NAD+ metabolites, suggesting the microbiome could be in competition with the host for dietary NAD+ precursors. These findings highlight new interactions between NMN and the gut microbiome.


Assuntos
Microbiota , Mononucleotídeo de Nicotinamida , Animais , Mononucleotídeo de Nicotinamida/metabolismo , NAD/metabolismo , Antibacterianos , Mamíferos/metabolismo
2.
Bioessays ; 42(3): e1900197, 2020 03.
Artigo em Inglês | MEDLINE | ID: mdl-31994769

RESUMO

The de-repression of transposable elements (TEs) in mammalian genomes is thought to contribute to genome instability, inflammation, and ageing, yet is viewed as a cell-autonomous event. In contrast to mammalian cells, prokaryotes constantly exchange genetic material through TEs, crossing both cell and species barriers, contributing to rapid microbial evolution and diversity in complex communities such as the mammalian gut. Here, it is proposed that TEs released from prokaryotes in the microbiome or from pathogenic infections regularly cross the kingdom barrier to the somatic cells of their eukaryotic hosts. It is proposed this horizontal transfer of TEs from microbe to host is a stochastic, ongoing catalyst of genome destabilization, resulting in structural and epigenetic variations, and activation of well-evolved host defense mechanisms contributing to inflammation, senescence, and biological ageing. It is proposed that innate immunity pathways defend against the horizontal acquisition of microbial TEs, and that activation of this pathway during horizontal transposon transfer promotes chronic inflammation during ageing. Finally, it is suggested that horizontal acquisition of prokaryotic TEs into mammalian genomes has been masked and subsequently under-reported due to flaws in current sequencing pipelines, and new strategies to uncover these events are proposed.


Assuntos
Envelhecimento/genética , Elementos de DNA Transponíveis/genética , Epigênese Genética , Transferência Genética Horizontal , Instabilidade Genômica/genética , Interações entre Hospedeiro e Microrganismos/genética , Mamíferos/genética , Animais , Evolução Molecular , Microbioma Gastrointestinal/genética , Humanos , Inflamação/genética , Células Procarióticas/metabolismo
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