Dominant defects in CHCHD10, a mitochondrial intermembrane space protein, lead to a range of neurological and muscle disease phenotypes including amyotrophic lateral sclerosis. Many patients present with spinal muscular atrophy Jokela type (SMAJ), which is caused by heterozygous p.G66V variant. While most disease variants lead to aggregation of CHCHD10 and activation of proteotoxic stress responses, the pathogenic mechanisms of the p.G66V variant are less clear. Here we report the first homozygous CHCHD10 patient, and show that the variant dosage dictates the severity of the motor neuron disease in SMAJ. We demonstrate that the amount of the mutant CHCHD10 is reduced, but the disease mechanism of p.G66V is not full haploinsufficiency as residual mutant CHCHD10 protein is present even in a homozygous state. Novel knock-in mouse model recapitulates the dose-dependent reduction of mutant CHCHD10 protein and the slow disease progression of SMAJ. With metabolome analysis of patients' primary fibroblasts and patient-specific motor neurons, we show that CHCHD10 p.G66V dysregulates energy metabolism, leading to altered redox balance and energy buffering by creatine metabolism.
Dose-dependent CHCHD10 dysregulation dictates motor neuron disease severity and alters creatine metabolism.
剂量依赖性的 CHCHD10 失调决定运动神经元疾病的严重程度并改变肌酸代谢
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作者:Harjuhaahto Sandra, Jokela Manu, Rajendran Jayasimman, Rokka Minea, Hu Bowen, Kvist Jouni, Zhang Fuping, Zárybnický Tomáš, Haimilahti Kimmo, Euro Liliya, Pirinen Eija, Huber Nadine, Herukka Sanna-Kaisa, Haapasalo Annakaisa, Kuuluvainen Emilia, Gopalakrishnan Swetha, Katajisto Pekka, Hietakangas Ville, Burg Thibaut, Van Den Bosch Ludo, Huang Xiaoping, Narendra Derek P, Kuure Satu, Ylikallio Emil, Tyynismaa Henna
| 期刊: | Acta Neuropathologica Communications | 影响因子: | 5.700 |
| 时间: | 2025 | 起止号: | 2025 May 22; 13(1):111 |
| doi: | 10.1186/s40478-025-02039-3 | 研究方向: | 代谢 |
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