REV-ERBα regulates brain NAD<sup>+</sup> levels and tauopathy via an NFIL3-CD38 axis.

Lee, Jiyeon; Kang, Ryeonghwa; Park, Sohui; Saliu, Ibrahim O; Son, Minsoo; Voorhees, Jaymie R; Dimitry, Julie M; Quillin, Elsa I et al. · Nat Aging · 2025

basic_science · Level V

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Abstract

Nicotinamide adenine dinucleotide (NAD<sup>+</sup>) is a critical metabolic co-enzyme implicated in brain aging, and augmenting NAD<sup>+</sup> levels in the aging brain is an attractive therapeutic strategy for neurodegeneration. However, the molecular mechanisms of brain NAD<sup>+</sup> regulation are incompletely understood. In cardiac tissue, the circadian nuclear receptor REV-ERBα has been shown to regulate NAD<sup>+</sup> via control of the NAD<sup>+</sup>-producing enzyme NAMPT. Here we show that REV-ERBα controls brain NAD<sup>+</sup> levels through a distinct pathway involving NFIL3-dependent suppression of the NAD<sup>+</sup>-consuming enzyme CD38, particularly in astrocytes. REV-ERBα deletion does not affect NAMPT expression in the brain and has an opposite effect on NAD<sup>+</sup> levels as in the heart. Astrocytic REV-ERBα deletion augments brain NAD<sup>+</sup> and prevents tauopathy in P301S mice. Our data reveal that REV-ERBα regulates NAD<sup>+</sup> in a tissue-specific manner via opposing regulation of NAMPT versus CD38 and define an astrocyte REV-ERBα-NFIL3-CD38 pathway controlling brain NAD<sup>+</sup> metabolism and neurodegeneration.

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