bioRxiv · 10.64898/2026.09.27.754319
Unraveling the metabolic landscape of alkaptonuria through a human-relevant in vitro liver disease model
Abstract
Alkaptonuria (AKU) is a rare inherited metabolic disorder of tyrosine catabolism caused by a deficient homogentisate 1,2-dioxygenase (HGD) enzyme. This results in the accumulation of homogentisic acid (HGA), driving a progressive multisystem pathology characterized by debilitating early-onset osteoarthritis due to connective tissue degeneration. While previous in vitro studies have primarily relied on exogenous HGA exposure in osteoarticular cell models, the direct metabolic consequences of endogenous HGD deficiency within its native hepatic context remain poorly understood. Here, we established the first human-relevant HGD knockout hepatic in vitro model using a universal in-house-developed homology-directed repair approach. Integrative multi-omic analysis revealed that HGD deficiency induces widespread metabolic rewiring extending beyond disrupted tyrosine catabolism. HGD-deficient hepatocytes exhibited elevated oxidative stress accompanied by impaired mitochondrial respiration and a pseudohypoxic metabolic adaptation toward increased glycolytic dependency. Despite this glycolytic shift, the cells displayed reduced anabolic and translational activity alongside attenuated proliferation, consistent with a chronic stress-adaptive survival state rather than a proliferative metabolic phenotype. This study provides systems-level insights into the pathophysiology of AKU and establishes a versatile platform for mechanistic and therapeutic investigation.
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Rombaut, M., Del'haye, G., Lequeue, S., Norman, B. P., Desmet, L., Salvi, N., Heymans, A., Neuckermans, J., Hughes, J. H., Ates, G., Massie, A., Vanhaecke, T., Bou-Gharios, G., De Kock, J.. 2026-09-29. Unraveling the metabolic landscape of alkaptonuria through a human-relevant in vitro liver disease model. https://doi.org/10.64898/2026.09.27.754319
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