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Updated: Sep 19, 2026

Quantification of Coenzyme A in Cells and Tissues
Published on: September 27, 2019
A Selective PanK3 Activator Restores Coenzyme A in Cellular and Mouse Models of Pantothenate Kinase-Associated
Jessica Regan1, Anasuya C Pal1, Shalev Gihaz2
1Department of Internal Medicine, Section of Infectious Diseases; Virtus Therapeutics Corporation. 93 Shennecossett Rd. Groton, Connecticut, 06340, USA.
Abstract:
Pantothenate kinase-associated neurodegeneration, PKAN, is a rare progressive neurodegenerative disorder associated with iron accumulation in the brain. The disease, which causes early immobility and often death by early adulthood, is caused by loss of function mutations in the human PANK2 gene, encoding a key enzyme in the biosynthesis of coenzyme A from pantothenic acid. To date, no disease-modifying therapy exists for PKAN, and current interventions are largely limited to symptomatic management. Herein we report the identification of a new class of direct activators of human PANK3, termed VTACs, designed to compensate for the loss of PANK2 function. Using cell and animal models of PanK2 deficiency, we demonstrate that a lead VTAC compound, VTAC-2, restores CoA levels to wild-type levels both in cells and in mouse brain. Moreover, the favorable physicochemical properties and oral bioavailability of VTAC-2 make this compound an attractive candidate for clinical evaluation for the treatment of PKAN.
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