UCI MIND, University of California Irvine, Irvine, CA, USA.
Department of Pathology and Cell Biology, Vagelos College of Physicians and Surgeons, Columbia University Irving Medical Center, New York, NY, USA.
Nat Commun. 2022 Dec 21;13(1):7791. doi: 10.1038/s41467-022-35388-x.
The complexity of affected brain regions and cell types is a challenge for Huntington's disease (HD) treatment. Here we use single nucleus RNA sequencing to investigate molecular pathology in the cortex and striatum from R6/2 mice and human HD post-mortem tissue. We identify cell type-specific and -agnostic signatures suggesting oligodendrocytes (OLs) and oligodendrocyte precursors (OPCs) are arrested in intermediate maturation states. OL-lineage regulators OLIG1 and OLIG2 are negatively correlated with CAG length in human OPCs, and ATACseq analysis of HD mouse NeuN-negative cells shows decreased accessibility regulated by OL maturation genes. The data implicates glucose and lipid metabolism in abnormal cell maturation and identify PRKCE and Thiamine Pyrophosphokinase 1 (TPK1) as central genes. Thiamine/biotin treatment of R6/1 HD mice to compensate for TPK1 dysregulation restores OL maturation and rescues neuronal pathology. Our insights into HD OL pathology spans multiple brain regions and link OL maturation deficits to abnormal thiamine metabolism.
受影响脑区和细胞类型的复杂性是亨廷顿病 (HD) 治疗的一个挑战。在这里,我们使用单核 RNA 测序来研究 R6/2 小鼠和人类 HD 尸检组织的皮层和纹状体中的分子病理学。我们确定了细胞类型特异性和非特异性特征,表明少突胶质细胞 (OLs) 和少突胶质前体细胞 (OPCs) 停滞在中间成熟状态。OL 谱系调节因子 OLIG1 和 OLIG2 与人类 OPC 中的 CAG 长度呈负相关,HD 小鼠 NeuN-阴性细胞的 ATACseq 分析显示,由 OL 成熟基因调节的可及性降低。这些数据表明葡萄糖和脂质代谢与异常细胞成熟有关,并确定 PRKCE 和焦磷酸硫胺素激酶 1 (TPK1) 为核心基因。用硫胺素/生物素治疗 R6/1 HD 小鼠以补偿 TPK1 失调可恢复 OL 成熟并挽救神经元病理。我们对 HD OL 病理学的深入了解跨越多个脑区,并将 OL 成熟缺陷与异常硫胺素代谢联系起来。