首页> 外文期刊>The American Journal of Human Genetics >NAXE Mutations Disrupt the Cellular NAD(P)HX Repair System and Cause a Lethal Neurometabolic Disorder of Early Childhood
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NAXE Mutations Disrupt the Cellular NAD(P)HX Repair System and Cause a Lethal Neurometabolic Disorder of Early Childhood

机译:NAXE突变破坏细胞NAD(P)HX修复系统,并导致致命的儿童早期神经代谢紊乱

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摘要

To safeguard the cell from the accumulation of potentially harmful metabolic intermediates, specific repair mechanisms have evolved. APOA1BP, now renamed NAXE, encodes an epimerase essential in the cellular metabolite repair for NADHX and NADPHX. The enzyme catalyzes the epimerization of NAD(P)HX, thereby avoiding the accumulation of toxic metabolites. The clinical importance of the NAD(P)HX repair system has been unknown. Exome sequencing revealed pathogenic biallelic mutations in NAXE in children from four families with (sub-) acute-onset ataxia, cerebellar edema, spinal myelopathy, and skin lesions. Lactate was elevated in cerebrospinal fluid of all affected individuals. Disease onset was during the second year of life and clinical signs as well as episodes of deterioration were triggered by febrile infections. Disease course was rapidly progressive, leading to coma, global brain atrophy, and finally to death in all affected individuals. NAXE levels were undetectable in fibroblasts from affected individuals of two families. In these fibroblasts we measured highly elevated concentrations of the toxic metabolite cyclic-NADHX, confirming a deficiency of the mitochondrial NAD(P)HX repair system. Finally, NAD or nicotinic acid (vitamin B3) supplementation might have therapeutic implications for this fatal disorder.
机译:为了保护细胞免受潜在有害的代谢中间体的积累,已经形成了特定的修复机制。现在更名为NAXE的APOA1BP编码一种对NADHX和NADPHX的细胞代谢产物修复至关重要的差向异构酶。该酶催化NAD(P)HX的差向异构化,从而避免了有毒代谢产物的积累。 NAD(P)HX修复系统的临床重要性尚不清楚。外显子组测序揭示了来自(亚)急性发作性共济失调,小脑浮肿,脊髓性脊髓病和皮肤病变的四个家庭的儿童NAXE的致病性双等位基因突变。所有受影响个体的脑脊液中乳酸含量升高。疾病发作发生在生命的第二年,并且由发热感染引发了临床体征以及病情恶化。疾病进程迅速进展,导致昏迷,全脑萎缩,并最终导致所有受影响个体死亡。在两个家庭的受影响个体的成纤维细胞中均未检测到NAXE水平。在这些成纤维细胞中,我们测定了高浓度的有毒代谢物环状NADHX,证实了线粒体NAD(P)HX修复系统的缺陷。最后,补充NAD或烟酸(维生素B3)可能对该致命疾病具有治疗意义。

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