The role of the tryptophan-NAD + pathway in a mouse model of severe malnutrition induced liver dysfunction.
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s41467-022-35317-y.pdf
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6.22 MB
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Resource type
Journal article
Creator (person)
Hu, Guanlan
Ling, Catriona
Chi, Lijun
Thind, Mehakpreet K.
Furse, Samuel
Koulman, Albert
Swann, Jonathan R.
Lee, Dorothy
Calon, Marjolein M.
Bourdon, Celine
Versloot, Christian J.
Bakker, Barbara M.
Gonzales, Gerard Bryan
Kim, Peter K.
Bandsma, Robert H. J.
Date published
December 8, 2022
Abstract
Mortality in children with severe malnutrition is strongly related to signs of metabolic dysfunction, such as hypoglycemia. Lower circulating tryptophan levels in children with severe malnutrition suggest a possible disturbance in the tryptophan-nicotinamide adenine dinucleotide (TRP-NAD+) pathway and subsequently in NAD+ dependent metabolism regulator sirtuin1 (SIRT1). Here we show that severe malnutrition in weanling mice, induced by 2-weeks of low protein diet feeding from weaning, leads to an impaired TRP-NAD+ pathway with decreased NAD+ levels and affects hepatic mitochondrial turnover and function. We demonstrate that stimulating the TRP-NAD+ pathway with NAD+ precursors improves hepatic mitochondrial and overall metabolic function through SIRT1 modulation. Activating SIRT1 is sufficient to induce improvement in metabolic functions. Our findings indicate that modulating the TRP-NAD+ pathway can improve liver metabolic function in a mouse model of severe malnutrition. These results could lead to the development of new interventions for children with severe malnutrition.
Project(s)
Priority 2: Trait Diversity and Function
Funder
| Funder name | Awards |
Bill and Melinda Gates Foundation, United States | OPP1185057 |
Canadian Institutes of Health Research, Canada | 156307 |
Journal title
Nature Communications
Volume
13
Article number
7576
Publisher
Springer Science and Business Media LLC
Place of publication
Berlin/Heidelberg, Germany
eISSN
2041-1723
Date accepted
November 29, 2022
Official URL
Rights statement
In Copyright
Additional information
IF = 14.919 (2021-2022)