Coenzyme Q headgroup intermediates can ameliorate a mitochondrial encephalopathy.

Shi, Guangbin; Miller, Claire; Kuno, Sota; Rey Hipolito, Alejandro G; El Nagar, Salsabiel; Riboldi, Giulietta M; Korn, Megan; Tran, Wyatt C et al. · Nature · 2025

basic_science · Level V

Where this comes from

Abstract

Decreased brain levels of coenzyme Q<sub>10</sub> (CoQ<sub>10</sub>), an endogenously synthesized lipophilic antioxidant<sup>1,2</sup>, underpin encephalopathy in primary CoQ<sub>10</sub> deficiencies<sup>3,4</sup> and are associated with common neurodegenerative diseases and the ageing process<sup>5,6</sup>. CoQ<sub>10</sub> supplementation does not increase CoQ<sub>10</sub> pools in the brain or in other tissues. The recent discovery of the mammalian CoQ<sub>10</sub> headgroup synthesis pathway, in which 4-hydroxyphenylpyruvate dioxygenase-like protein (HPDL) makes 4-hydroxymandelate (4-HMA) to synthesize the CoQ<sub>10</sub> headgroup precursor 4-hydroxybenzoate (4-HB)<sup>7</sup>, offers an opportunity to pharmacologically restore CoQ<sub>10</sub> synthesis and mechanistically treat CoQ<sub>10</sub> deficiencies. To test whether 4-HMA or 4-HB supplementation promotes CoQ<sub>10</sub> headgroup synthesis in vivo, here we administered 4-HMA and 4-HB to Hpdl<sup>-/-</sup> mice, which model an ultra-rare, lethal mitochondrial encephalopathy in humans. Both 4-HMA and 4-HB were incorporated into CoQ<sub>9</sub> and CoQ<sub>10</sub> in the brains of Hpdl<sup>-/-</sup> mice. Oral treatment of Hpdl<sup>-/-</sup> pups with 4-HMA or 4-HB enabled 90-100% of Hpdl<sup>-/-</sup> mice to live to adulthood. Furthermore, 4-HB treatment stabilized and improved the neurological symptoms of a patient with progressive spasticity due to biallelic HPDL variants. Our work shows that 4-HMA and 4-HB can modify the course of mitochondrial encephalopathy driven by HPDL variants and demonstrates that CoQ<sub>10</sub> headgroup intermediates can restore CoQ<sub>10</sub> synthesis in vivo.

Medical subject headings