首页> 外文期刊>Brain: A journal of neurology >Pantethine treatment is effective in recovering the disease phenotype induced by ketogenic diet in a pantothenate kinase-associated neurodegeneration mouse model
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Pantethine treatment is effective in recovering the disease phenotype induced by ketogenic diet in a pantothenate kinase-associated neurodegeneration mouse model

机译:泛汀治疗可有效恢复泛酸激酶相关的神经退行性小鼠模型中由生酮饮食诱导的疾病表型

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摘要

Pantothenate kinase-associated neurodegeneration, caused by mutations in the PANK2 gene, is an autosomal recessive disorder characterized by dystonia, dysarthria, rigidity, pigmentary retinal degeneration and brain iron accumulation. PANK2 encodes the mitochondrial enzyme pantothenate kinase type 2, responsible for the phosphorylation of pantothenate or vitamin B5 in the biosynthesis of co-enzyme A. A Pank2 knockout (Pank2-/-) mouse model did not recapitulate the human disease but showed azoospermia and mitochondrial dysfunctions. We challenged this mouse model with a low glucose and high lipid content diet (ketogenic diet) to stimulate lipid use by mitochondrial beta-oxidation. In the presence of a shortage of co-enzyme A, this diet could evoke a general impairment of bioenergetic metabolism. Only Pank2-/- mice fed with a ketogenic diet developed a pantothenate kinase-associated neurodegeneration-like syndrome characterized by severe motor dysfunction, neurodegeneration and severely altered mitochondria in the central and peripheral nervous systems. These mice also showed structural alteration of muscle morphology, which was comparable with that observed in a patient with pantothenate kinase-associated neurodegeneration. We here demonstrate that pantethine administration can prevent the onset of the neuromuscular phenotype in mice suggesting the possibility of experimental treatment in patients with pantothenate kinase-associated neurodegeneration.
机译:泛酸激酶相关的神经变性,是由PANK2基因突变引起的,是一种常染色体隐性遗传疾病,其特征为肌张力障碍,构音障碍,僵硬,视网膜色素变性和脑铁积聚。 PANK2编码线粒体酶泛酸激酶2型,负责泛酸或维生素B5在辅酶A生物合成中的磷酸化。Pank2基因敲除(Pank2-/-)小鼠模型没有概括人类疾病,但显示了无精症和线粒体。功能障碍。我们用低葡萄糖和高脂质含量饮食(生酮饮食)挑战了该小鼠模型,以通过线粒体β-氧化刺激脂质的使用。在缺乏辅酶A的情况下,这种饮食会引起生物能代谢的普遍损害。只有用生酮饮食喂养的Pank2-/-小鼠会出现泛酸激酶相关的神经变性样综合征,其特征是严重的运动功能障碍,神经变性和中枢神经系统和周围神经系统的线粒体发生严重改变。这些小鼠还表现出肌肉形态的结构改变,这与泛酸激酶相关的神经变性患者的观察结果相当。我们在这里证明,泛酸给药可以预防小鼠神经肌肉表型的发作,表明在与泛酸激酶相关的神经变性患者中进行实验性治疗的可能性。

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