Department of Human Genetics, Emory University School of Medicine, Atlanta, GA, USA.
Department of Neurology, Emory University School of Medicine, Atlanta, GA, USA.
J Neurogenet. 2022 Mar-Jun;36(2-3):81-87. doi: 10.1080/01677063.2022.2129632. Epub 2022 Oct 13.
Lesch-Nyhan disease (LND) is a neurodevelopmental disorder caused by variants in the gene, which encodes the enzyme hypoxanthine-guanine phosphoribosyl transferase (HGprt). HGprt deficiency provokes numerous metabolic changes which vary among different cell types, making it unclear which changes are most relevant for abnormal neural development. To begin to elucidate the consequences of HGprt deficiency for developing human neurons, neural stem cells (NSCs) were prepared from 6 induced pluripotent stem cell (iPSC) lines from individuals with LND and compared to 6 normal healthy controls. For all 12 lines, gene expression profiles were determined by RNA-seq and protein expression profiles were determined by shotgun proteomics. The LND lines revealed significant changes in expression of multiple genes and proteins. There was little overlap in findings between iPSCs and NSCs, confirming the impact of HGprt deficiency depends on cell type. For NSCs, gene expression studies pointed towards abnormalities in WNT signaling, which is known to play a role in neural development. Protein expression studies pointed to abnormalities in the mitochondrial FF ATPase, which plays a role in maintaining cellular energy. These studies point to some mechanisms that may be responsible for abnormal neural development in LND.
莱施-尼汉综合征(Lesch-Nyhan disease,LND)是一种神经发育障碍,由基因中的变异引起,该基因编码次黄嘌呤-鸟嘌呤磷酸核糖转移酶(hypoxanthine-guanine phosphoribosyl transferase,HGprt)。HGprt 缺乏会引起许多代谢变化,这些变化在不同的细胞类型中有所不同,因此不清楚哪些变化与异常神经发育最相关。为了开始阐明 HGprt 缺乏对发育中人类神经元的影响,我们从 6 名 LND 个体的诱导多能干细胞(induced pluripotent stem cell,iPSC)中制备了神经干细胞(neural stem cells,NSCs),并与 6 名正常健康对照进行了比较。对于所有 12 条线,我们通过 RNA-seq 确定了基因表达谱,通过 shotgun 蛋白质组学确定了蛋白质表达谱。LND 线显示出多个基因和蛋白质表达的显著变化。iPSC 和 NSCs 之间的发现几乎没有重叠,这证实了 HGprt 缺乏的影响取决于细胞类型。对于 NSCs,基因表达研究表明 WNT 信号通路存在异常,该通路已知在神经发育中发挥作用。蛋白质表达研究表明线粒体 FF ATP 酶存在异常,该酶在维持细胞能量方面发挥作用。这些研究指出了一些可能导致 LND 中异常神经发育的机制。