Genetic variants affecting NQO1 protein levels impact the efficacy of idebenone treatment in Leber hereditary optic neuropathy

影响 NQO1 蛋白水平的基因变异会影响艾地苯醌治疗莱伯遗传性视神经病变的疗效。

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作者:Serena Jasmine Aleo ,Valentina Del Dotto ,Martina Romagnoli ,Claudio Fiorini ,Giada Capirossi ,Camille Peron ,Alessandra Maresca ,Leonardo Caporali ,Mariantonietta Capristo ,Concetta Valentina Tropeano ,Claudia Zanna ,Fred N Ross-Cisneros ,Alfredo A Sadun ,Maria Gemma Pignataro ,Carla Giordano ,Chiara Fasano ,Andrea Cavaliere ,Anna Maria Porcelli ,Gaia Tioli ,Francesco Musiani ,Alessia Catania ,Costanza Lamperti ,Stefania Bianchi Marzoli ,Annamaria De Negri ,Maria Lucia Cascavilla ,Marco Battista ,Piero Barboni ,Michele Carbonelli ,Giulia Amore ,Chiara La Morgia ,Dmitrii Smirnov ,Catalina Vasilescu ,Aiman Farzeen ,Beryll Blickhaeuser ,Holger Prokisch ,Claudia Priglinger ,Bettina Livonius ,Claudia B Catarino ,Thomas Klopstock ,Valeria Tiranti ,Valerio Carelli ,Anna Maria Ghelli

Abstract

Idebenone, the only approved treatment for Leber hereditary optic neuropathy (LHON), promotes recovery of visual function in up to 50% of patients, but we can neither predict nor understand the non-responders. Idebenone is reduced by the cytosolic NAD(P)H oxidoreductase I (NQO1) and directly shuttles electrons to respiratory complex III, bypassing complex I affected in LHON. We show here that two polymorphic variants drastically reduce NQO1 protein levels when homozygous or compound heterozygous. This hampers idebenone reduction. In its oxidized form, idebenone inhibits complex I, decreasing respiratory function in cells. By retrospectively analyzing a large cohort of idebenone-treated LHON patients, classified by their response to therapy, we show that patients with homozygous or compound heterozygous NQO1 variants have the poorest therapy response, particularly if carrying the m.3460G>A/MT-ND1 LHON mutation. These results suggest consideration of patient NQO1 genotype and mitochondrial DNA mutation in the context of idebenone therapy. Keywords: LHON; Leber hereditary optic neuropathy; NQO1; complex I; cybrids; fibroblasts; idebenone; mtDNA; retinal ganglion cells.

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