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首页> 外文期刊>Neuromolecular medicine >Overexpression of Human Mutant PANK2 Proteins Affects Development and Motor Behavior of Zebrafish Embryos
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Overexpression of Human Mutant PANK2 Proteins Affects Development and Motor Behavior of Zebrafish Embryos

机译:人突变疱疹2蛋白的过度表达影响斑马鱼胚胎的发育和运动行为

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摘要

Pantothenate Kinase-Associated Neurodegeneration (PKAN) is a genetic and early-onset neurodegenerative disorder characterized by iron accumulation in the basal ganglia. It is due to mutations in Pantothenate Kinase 2 (PANK2), an enzyme that catalyzes the phosphorylation of vitamin B5, first and essential step in coenzyme A (CoA) biosynthesis. Most likely, an unbalance of the neuronal levels of this important cofactor represents the initial trigger of the neurodegenerative process, yet a complete understanding of the connection between PANK2 malfunctioning and neuronal death is lacking. Most PKAN patients carry mutations in both alleles and a loss of function mechanism is proposed to explain the pathology. When PANK2 mutants were analyzed for stability, dimerization capacity, and enzymatic activity in vitro, many of them showed properties like the wild-type form. To further explore this aspect, we overexpressed the wild-type protein, two mutant forms with reduced kinase activity and two retaining the catalytic activity in zebrafish embryos and analyzed the morpho-functional consequences. While the wild-type protein had no effects, all mutant proteins generated phenotypes that partially resembled those observed in pank2 and coasy morphants and were rescued by CoA and vitamin B5 supplementation. The overexpression of PANK2 mutant forms appears to be associated with perturbation in CoA availability, irrespective of their catalytic activity.
机译:泛酸激酶相关的神经变性(PKAN)是一种遗传和早期发作的神经变性障碍,其特征在于基础神经节的铁积累。它是由于泛酸乙酸激酶2(PANK2)中的突变,一种催化维生素B5的磷酸化的酶,第一和辅酶A(COA)生物合成的第一和基本步骤。最有可能的是,这种重要辅因子的神经元水平的不平衡代表了神经变性过程的初始触发,但缺乏对Pank2故障和神经元死亡之间的联系的完全理解。大多数PKAN患者在两位等位基因中携带突变,并提出了一种功能机制的丧失来解释病理学。当分析PAMP2突变体以进行稳定性,二聚化能力和体外酶活性,其中许多均为野生型形式表现出特性。为了进一步探索这一方面,我们过表达了野生型蛋白质,两种突变形式具有降低的激酶活性,并在斑马鱼胚胎中保留催化活性并分析了官能功能的后果。虽然野生型蛋白质没有效果,但所有突变蛋白产生的表型,这些表型在pank2和坐满的鱼类中观察到的那些,并被COA和维生素B5补充所救出。不管其催化活性如何,Pank2突变形式的过表达似乎与COA可用性的扰动相关。

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