Li Xinyu, Zhang Meng, Liu Yanan, Guo Chunjie, Liu Yiwei, Han Lei, Feng Zhaowei, Wei Xiue, Yao Ruiqin
Department of Cell Biology and Neurobiology, Xuzhou Key Laboratory of Neurobiology, Xuzhou Medical University, Xuzhou, Jiangsu Province, China.
Department of Neurology, and.
JCI Insight. 2025 Aug 8;10(15). doi: 10.1172/jci.insight.193712.
Preterm white matter injury (PWMI) is a leading cause of cerebral palsy and chronic neurological disabilities in premature infants. It is characterized by defects in oligodendrocyte precursor cell (OPC) differentiation and dysmyelination. Currently, there are no effective therapeutic strategies available in clinical practice. Lipid homeostasis plays a crucial role in myelin development, yet the function of Lipin1 - a key phosphatidic acid phosphatase involved in phospholipid synthesis - remains unclear. In this study, we identified a significant downregulation of Lipin1 in OPCs from PWMI mice, which impaired OPC differentiation and myelin formation. Conversely, Lipin1 overexpression in these mice promoted OPC maturation and enhanced myelin development. We found evidence that N-acetyltransferase 10 (NAT10) acts as a regulator of Lipin1 expression through RNA pull-down and mass spectrometry. NAT10-mediated N4-acetylcytidine (ac4C) modification enhanced Lipin1 mRNA stability and translation, and NAT10 knockdown in OPCs impaired myelination, highlighting its crucial role in Lipin1-mediated myelination. Our study revealed that the downregulation of Lipin1 impaired OPC differentiation and myelination in PWMI, with NAT10-mediated ac4C modification playing a critical role in regulating Lipin1 expression. These findings highlight Lipin1 and NAT10 as promising therapeutic targets for treating myelination defects in PWMI, warranting further investigation into their potential in preterm birth-related neurological disorders.
早产脑白质损伤(PWMI)是早产儿脑瘫和慢性神经功能障碍的主要原因。其特征是少突胶质前体细胞(OPC)分化缺陷和髓鞘形成异常。目前,临床实践中尚无有效的治疗策略。脂质稳态在髓鞘发育中起关键作用,但参与磷脂合成的关键磷脂酸磷酸酶Lipin1的功能仍不清楚。在本研究中,我们发现PWMI小鼠的OPC中Lipin1显著下调,这损害了OPC分化和髓鞘形成。相反,在这些小鼠中过表达Lipin1可促进OPC成熟并增强髓鞘发育。我们通过RNA下拉和质谱分析发现N-乙酰转移酶10(NAT10)作为Lipin1表达的调节因子。NAT10介导的N4-乙酰胞苷(ac4C)修饰增强了Lipin1 mRNA的稳定性和翻译,OPC中NAT10的敲低损害了髓鞘形成,突出了其在Lipin1介导的髓鞘形成中的关键作用。我们的研究表明,Lipin1的下调损害了PWMI中OPC的分化和髓鞘形成,NAT10介导的ac4C修饰在调节Lipin1表达中起关键作用。这些发现突出了Lipin1和NAT10作为治疗PWMI髓鞘形成缺陷的有前景的治疗靶点,值得进一步研究它们在早产相关神经疾病中的潜力。