Genetic pain loss disorders represent a heterogeneous group of rare diseases mainly characterized by defective nociception. Understanding the underlying molecular mechanism is fundamental to improve the treatment of patients affected by these rare disorders. Feline Leukemia Virus Subgroup C Receptor 1 (FLVCR1) is one of the genes previously associated with sensory neuropathy that requires further investigation. Here, we report on two additional patients with novel disease-causing variants in FLVCR1 and introduce a zebrafish model of the disease. The analyses of patient-derived fibroblasts show that distinct FLVCR1 variants compromised all the known functions associated with FLVCR1, thus affecting choline levels, heme biosynthesis and mitochondrial Ca(2+) handling. Furthermore, we provide evidence that the alteration of these processes impairs the TCA cycle and OXPHOS, and induces lipid peroxidation. Our data points to the alterations of energetic metabolism as a potential driving pathomechanism in FLVCR1-associated sensory neuropathy.
Mitochondrial energetic failure underlies FLVCR1-related sensory neuropathy.
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作者:Bertino Francesca, Zanin Venturini Diletta Isabella, Grasso Eleonora, Kopecka Joanna, Salio Chiara, Gnutti Barbara, Basnet Ram Manohar, Bellini Stefania, Mignani Luca, Zhao Boxun, Kleefeld Felix, Hentschel Andreas, Magnani Francesca, Fiorito Veronica, Abalai Raluca Elena, Metani Livia, Allocco Anna Lucia, Petrillo Sara, De Giorgio Francesco, Ammirata Giorgia, Salsano Ettore, Pareyson Davide, di Rocco Maja, Abicht Angela, McCourt Emily, Horvath Rita, Kölbel Heike, Larson Austin, Roos Andreas, Yu Timothy W, Finazzi Dario, Riganti Chiara, Tolosano Emanuela, Chiabrando Deborah
| 期刊: | Communications Biology | 影响因子: | 5.100 |
| 时间: | 2026 | 起止号: | 2026 Feb 14; 9(1):429 |
| doi: | 10.1038/s42003-026-09691-y | ||
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