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Publication : Loss of NAD Homeostasis Leads to Progressive and Reversible Degeneration of Skeletal Muscle.

First Author  Frederick DW Year  2016
Journal  Cell Metab Volume  24
Issue  2 Pages  269-82
PubMed ID  27508874 Mgi Jnum  J:256744
Mgi Id  MGI:6106921 Doi  10.1016/j.cmet.2016.07.005
Citation  Frederick DW, et al. (2016) Loss of NAD Homeostasis Leads to Progressive and Reversible Degeneration of Skeletal Muscle. Cell Metab 24(2):269-82
abstractText  NAD is an obligate co-factor for the catabolism of metabolic fuels in all cell types. However, the availability of NAD in several tissues can become limited during genotoxic stress and the course of natural aging. The point at which NAD restriction imposes functional limitations on tissue physiology remains unknown. We examined this question in murine skeletal muscle by specifically depleting Nampt, an essential enzyme in the NAD salvage pathway. Knockout mice exhibited a dramatic 85% decline in intramuscular NAD content, accompanied by fiber degeneration and progressive loss of both muscle strength and treadmill endurance. Administration of the NAD precursor nicotinamide riboside rapidly ameliorated functional deficits and restored muscle mass despite having only a modest effect on the intramuscular NAD pool. Additionally, lifelong overexpression of Nampt preserved muscle NAD levels and exercise capacity in aged mice, supporting a critical role for tissue-autonomous NAD homeostasis in maintaining muscle mass and function.
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