Nicotinic acid riboside maintains NAD<sup>+</sup> homeostasis and ameliorates aging-associated NAD<sup>+</sup> decline.

Song, Won-Suk; Shen, Xiyu; Du, Kang; Ramirez, Cuauhtemoc B; Park, Sang Hee; Cao, Yang; Le, Johnny; Bae, Hosung et al. · Cell Metab · 2025

basic_science · Level V

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Abstract

Liver-derived circulating nicotinamide from nicotinamide adenine dinucleotide (NAD<sup>+</sup>) catabolism primarily feeds systemic organs for NAD<sup>+</sup> synthesis. We surprisingly found that, despite blunted hepatic NAD<sup>+</sup> and nicotinamide production in liver-specific nicotinamide nucleotide adenylyltransferase 1 (NMNAT1) deletion mice (liver-specific knockout [LKO]), circulating nicotinamide and extra-hepatic organs' NAD<sup>+</sup> are unaffected. Metabolomics reveals a massive accumulation of a novel molecule in the LKO liver, which we identify as nicotinic acid riboside (NaR). We further demonstrate cytosolic 5'-nucleotidase II (NT5C2) as the NaR-producing enzyme. The liver releases NaR to the bloodstream, and kidneys take up NaR to synthesize NAD<sup>+</sup> through nicotinamide riboside kinase 1 (NRK1) and replenish circulating nicotinamide. Serum NaR levels decline with aging, whereas oral NaR supplementation in aged mice boosts serum nicotinamide and multi-organ NAD<sup>+</sup>, including kidneys, and reduces kidney inflammation and albuminuria. Thus, the liver-kidney axis maintains systemic NAD<sup>+</sup> homeostasis via circulating NaR, and NaR supplement ameliorates aging-associated NAD<sup>+</sup> decline and kidney dysfunction.

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