Ratti Stefano, Rusciano Isabella, Mongiorgi Sara, Neri Irene, Cappellini Alessandra, Cortelli Pietro, Suh Pann-Ghill, McCubrey James A, Manzoli Lucia, Cocco Lucio, Ramazzotti Giulia
Cellular Signalling Laboratory, Department of Biomedical and NeuroMotor Sciences (DIBINEM), University of Bologna, 40126 Bologna, Italy.
Department of Biomedical and NeuroMotor Sciences (DIBINEM), University of Bologna, 40139 Bologna, Italy.
Cells. 2021 Sep 28;10(10):2566. doi: 10.3390/cells10102566.
Autosomal dominant leukodystrophy (ADLD) is an extremely rare and fatal neurodegenerative disease due to the overexpression of the nuclear lamina component Lamin B1. Many aspects of the pathology still remain unrevealed. This work highlights the effect of Lamin B1 accumulation on different cellular functions in an ADLD astrocytic in vitro model. Lamin B1 overexpression induces alterations in cell survival signaling pathways with GSK3β inactivation, but not the upregulation of β-catenin targets, therefore resulting in a reduction in astrocyte survival. Moreover, Lamin B1 build up affects proliferation and cell cycle progression with an increase of PPARγ and p27 and a decrease of Cyclin D1. These events are also associated to a reduction in cell viability and an induction of apoptosis. Interestingly, ADLD astrocytes trigger a tentative activation of survival pathways that are ineffective. Finally, astrocytes overexpressing Lamin B1 show increased immunoreactivity for both GFAP and vimentin together with NF-kB phosphorylation and c-Fos increase, suggesting astrocytes reactivity and substantial cellular activation. These data demonstrate that Lamin B1 accumulation is correlated to biochemical, metabolic, and morphologic remodeling, probably related to the induction of a reactive astrocytes phenotype that could be strictly associated to ADLD pathological mechanisms.
常染色体显性遗传性脑白质营养不良(ADLD)是一种极为罕见的致命性神经退行性疾病,由核纤层蛋白成分核纤层蛋白B1(Lamin B1)的过度表达引起。其病理学的许多方面仍未明了。这项研究突出了在ADLD星形胶质细胞体外模型中Lamin B1积累对不同细胞功能的影响。Lamin B1的过表达通过GSK3β失活诱导细胞存活信号通路的改变,但未导致β-连环蛋白靶标的上调,因此导致星形胶质细胞存活率降低。此外,Lamin B1的积累通过PPARγ和p27的增加以及细胞周期蛋白D1的减少影响增殖和细胞周期进程。这些事件还与细胞活力降低和细胞凋亡诱导相关。有趣的是,ADLD星形胶质细胞触发了无效的存活途径的尝试性激活。最后,过表达Lamin B1的星形胶质细胞对GFAP和波形蛋白的免疫反应性增加,同时伴有NF-κB磷酸化和c-Fos增加,提示星形胶质细胞反应性和实质性细胞激活。这些数据表明,Lamin B1的积累与生化、代谢和形态重塑相关,可能与反应性星形胶质细胞表型的诱导有关,而这可能与ADLD的病理机制密切相关。