15-066
P. Britz-McKibbin
US Patent 10426751 EP Patent 3242658
Proof of Principle data available
Sunita Asrani Associate Director Business Development and Copyright
Pharmacological chaperones (PCs) are a promising strategy for the treatment of genetic disorders based on enzyme enhancement therapy, such as phenylketonuria (PKU). PKU is a common in-born error of amino acid metabolism that is related to more than 500 disease-causing mutations of phenylalanine hydroxylase (PAH) or by a defect in the synthesis or re generation of tetrahydrobiopterin (BH4). To date, lifelong dietary Phe restriction and BH4 supplementation are the only accepted treatment options for PKU patients. However, special low-protein diets can lead to malnutrition, psychosocial or neurocognitive complications due to poor compliance, while BH4 therapy is costly and only 20-30% of PKU patients are responsive.
Using a novel screening strategy to identify small molecules from a chemical library with chaperone activity, McMaster researchers have identified plant-derived natural products (and synthetic analogs) that enhance the activity of denatured/inactive wild-type PAH and two clinically relevant PKU mutant enzymes. These plant-derived natural products are present in variable amounts in the human diet and thus offer a safe yet effective therapeutic treatment of PKU via nutritional supplementation, notably for patients with severe phenotypes.