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Ceramide galactosyltransferase (CGT), also known as UGT8, is a key enzyme located in the endoplasmic reticulum that catalyzes the transfer of galactose from UDP-galactose to ceramide [1, 8, 14]. This reaction is the primary step in the biosynthesis of galactosylceramide (GalCer), which is a critical component of the myelin sheath in both the central and peripheral nervous systems [8, 15]. In the context of lysosomal storage diseases such as Krabbe disease and metachromatic leukodystrophy, CGT is a therapeutic target for substrate reduction therapy (SRT); by inhibiting this enzyme, researchers aim to limit the accumulation of toxic sphingolipids like psychosine and sulfatide [1, 2, 4]. Furthermore, UGT8 is overexpressed in aggressive cancers, particularly basal-like breast cancer, where it promotes tumor progression and metastasis by activating the sulfatide-integrin signaling axis [3, 8]. Pharmacological inhibition of CGT using small molecules like thienopyridines (e.g., RA 5557) or repurposed drugs like zoledronic acid is currently being explored as a strategy to treat these neurodegenerative and oncological conditions [2, 3, 4].
Inhibition of ceramide galactosyltransferase to reduce the synthesis of galactosylceramide and its derivatives, thereby preventing the accumulation of toxic metabolites like psychosine in lysosomal storage disorders or pro-tumorigenic sulfatides in cancer.
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