Data di Pubblicazione:
2026
Abstract:
Coenzyme Q biosynthesis requires two atypical kinase-like proteins (COQ8A and COQ8B), whose detailed molecular mechanism remains unclear. Here, we show that both paralogs function as adenosine triphosphatases (ATPases) that promote coenzyme Q biosynthetic metabolon activity by engaging in loose protein-protein interactions and delivering insoluble biosynthetic intermediates. Structural bioinformatics and pathological variant–driven mutagenesis identify a previously uncharacterized pocket that selectively recognizes coenzyme Q biosynthetic intermediates via their head groups. X-ray crystallography reveals that access to this pocket is gated by long-range conformational changes controlled by adenosine 5′-triphosphate hydrolysis. Last, excess coenzyme Q suppresses binding of early-stage intermediates and thereby abolishes the promoting effect of COQ8 on the metabolon. Together, these findings support a model in which COQ8 tunes coenzyme Q biosynthesis by coupling ATPase-driven intermediate chaperoning to feedback inhibition by the final product.
Tipologia CRIS:
1.1 Articolo in rivista
Keywords:
coenzyme Q; metabolon; kinase, metabolism; drug design
Elenco autori:
Gottinger, Andrea; Malatesta, Marco; Nicoll, Callum R; Ansari, Georg; Quinodoz, Mathieu; Kaminska, Karolina; Tang, Rachael W C; Tan, Tien-En; Fenner, Beau J; Barberán-Martínez, Pilar; García-García, Gema; Millán, José M; Pfau, Maximilian; Burbach, Natalie E; Cecchini, Domiziana; Rivolta, Carlo; Mattevi, Andrea
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