首页> 外文期刊>The American Journal of Human Genetics >Folate receptor alpha defect causes cerebral folate transport deficiency: a treatable neurodegenerative disorder associated with disturbed myelin metabolism.
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Folate receptor alpha defect causes cerebral folate transport deficiency: a treatable neurodegenerative disorder associated with disturbed myelin metabolism.

机译:叶酸受体α缺陷会导致脑叶酸转运不足:一种可治疗的神经变性疾病,与髓磷脂代谢异常有关。

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摘要

Sufficient folate supplementation is essential for a multitude of biological processes and diverse organ systems. At least five distinct inherited disorders of folate transport and metabolism are presently known, all of which cause systemic folate deficiency. We identified an inherited brain-specific folate transport defect that is caused by mutations in the folate receptor 1 (FOLR1) gene coding for folate receptor alpha (FRalpha). Three patients carrying FOLR1 mutations developed progressive movement disturbance, psychomotor decline, and epilepsy and showed severely reduced folate concentrations in the cerebrospinal fluid (CSF). Brain magnetic resonance imaging (MRI) demonstrated profound hypomyelination, and MR-based in vivo metabolite analysis indicated a combined depletion of white-matter choline and inositol. Retroviral transfection of patient cells with either FRalpha or FRbeta could rescue folate binding. Furthermore, CSF folate concentrations, as well as glial choline and inositol depletion, were restored by folinic acid therapy and preceded clinical improvements. Our studies not only characterize a previously unknown and treatable disorder of early childhood, but also provide new insights into the folate metabolic pathways involved in postnatal myelination and brain development.
机译:充足的叶酸补充对于多种生物过程和多种器官系统至关重要。目前已知至少有五种不同的遗传性叶酸运输和代谢异常,所有这些都会导致系统性叶酸缺乏。我们确定了遗传的脑特异性叶酸转运缺陷,其由叶酸受体α(FRalpha)编码的叶酸受体1(FOLR1)基因突变引起。三名携带FOLR1突变的患者出现了进行性运动障碍,精神运动下降和癫痫,并显示脑脊液(CSF)中的叶酸浓度严重降低。脑磁共振成像(MRI)表现出严重的髓鞘减少,基于MR的体内代谢物分析表明白质胆碱和肌醇的联合消耗。用FRalpha或FRbeta逆转录病毒转染患者细胞可以拯救叶酸结合。此外,通过亚叶酸治疗可以恢复脑脊液中叶酸的浓度以及神经胶质胆碱和肌醇的消耗,并在临床上有所改善。我们的研究不仅描述了早期未知的可治疗的早期疾病,而且还提供了与产后髓鞘形成和大脑发育有关的叶酸代谢途径的新见解。

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