Department of Pharmacology and Toxicology, Institute for Myelin and Glia Exploration, Jacobs School of Medicine and Biomedical Sciences, The State University of New York, University at Buffalo, Buffalo, New York, USA.
Glia. 2023 Oct;71(10):2323-2342. doi: 10.1002/glia.24424. Epub 2023 Jun 3.
Ceruloplasmin (Cp) is a ferroxidase enzyme that is essential for cell iron efflux. The absence of this protein in humans and rodents produces progressive neurodegeneration with brain iron accumulation. Astrocytes express high levels of Cp and iron efflux from these cells has been shown to be central for oligodendrocyte maturation and myelination. To explore the role of astrocytic Cp in brain development and aging we generated a specific conditional KO mouse for Cp in astrocytes (Cp cKO). Deletion of Cp in astrocytes during the first postnatal week induced hypomyelination and a significant delay in oligodendrocyte maturation. This abnormal myelin synthesis was exacerbated throughout the first two postnatal months and accompanied by a reduction in oligodendrocyte iron content, as well as an increase in brain oxidative stress. In contrast to young animals, deletion of astrocytic Cp at 8 months of age engendered iron accumulation in several brain areas and neurodegeneration in cortical regions. Aged Cp cKO mice also showed myelin loss and oxidative stress in oligodendrocytes and neurons, and at 18 months of age, developed abnormal behavioral profiles, including deficits in locomotion and short-term memory. In summary, our results demonstrate that iron efflux-mediated by astrocytic Cp-is essential for both early oligodendrocyte maturation and myelin integrity in the mature brain. Additionally, our data suggest that astrocytic Cp activity is central to prevent iron accumulation and iron-induced oxidative stress in the aging CNS.
铜蓝蛋白(Cp)是一种亚铁氧化酶,对细胞铁外排至关重要。人类和啮齿动物中这种蛋白质的缺失会导致进行性神经退行性变和脑铁积累。星形胶质细胞表达高水平的 Cp,并且已经证明这些细胞的铁外排对于少突胶质细胞成熟和髓鞘形成至关重要。为了探索星形胶质细胞中 Cp 在大脑发育和衰老中的作用,我们生成了一种 Cp 在星形胶质细胞中特异性条件敲除(Cp cKO)的小鼠。在出生后的第一周内敲除星形胶质细胞中的 Cp 会导致少突胶质细胞成熟和髓鞘形成异常,并显著延迟。这种异常的髓鞘合成在出生后的前两个月加剧,并伴随着少突胶质细胞铁含量减少以及大脑氧化应激增加。与年轻动物相比,在 8 个月大时敲除星形胶质细胞中的 Cp 会导致几个脑区铁积累和皮质区神经退行性变。年老的 Cp cKO 小鼠的少突胶质细胞和神经元中也出现髓鞘丢失和氧化应激,并且在 18 个月大时,表现出异常的行为特征,包括运动和短期记忆缺陷。总之,我们的结果表明,由星形胶质细胞 Cp 介导的铁外排对于早期少突胶质细胞成熟和成熟大脑中的髓鞘完整性至关重要。此外,我们的数据表明,星形胶质细胞 Cp 的活性对于防止衰老中枢神经系统中的铁积累和铁诱导的氧化应激至关重要。