Neuroscience Initiative at the Advanced Science Research Center of the Graduate Center of the City University of New York, 85 St. Nicholas Terrace, New York, NY 10031, USA.
Neuroscience Initiative at the Advanced Science Research Center of the Graduate Center of the City University of New York, 85 St. Nicholas Terrace, New York, NY 10031, USA; Graduate Program in Biochemistry, The Graduate Center of The City University of New York, 365 5(th) Avenue, New York, NY 10016, USA.
Cell Rep. 2023 Aug 29;42(8):112848. doi: 10.1016/j.celrep.2023.112848. Epub 2023 Jul 28.
Oligodendrocytes are specialized cells that insulate and support axons with their myelin membrane, allowing proper brain function. Here, we identify lamin A/C (LMNA/C) as essential for transcriptional and functional stability of myelinating oligodendrocytes. We show that LMNA/C levels increase with differentiation of progenitors and that loss of Lmna in differentiated oligodendrocytes profoundly alters their chromatin accessibility and transcriptional signature. Lmna deletion in myelinating glia is compatible with normal developmental myelination. However, altered chromatin accessibility is detected in fully differentiated oligodendrocytes together with increased expression of progenitor genes and decreased levels of lipid-related transcription factors and inner mitochondrial membrane transcripts. These changes are accompanied by altered brain metabolism, lower levels of myelin-related lipids, and altered mitochondrial structure in oligodendrocytes, thereby resulting in myelin thinning and the development of a progressively worsening motor phenotype. Overall, our data identify LMNA/C as essential for maintaining the transcriptional and functional stability of myelinating oligodendrocytes.
少突胶质细胞是一种特化的细胞,其髓鞘膜可隔离和支持轴突,从而维持大脑的正常功能。在这里,我们确定核纤层蛋白 A/C(lamin A/C,LMNA/C)对形成髓鞘的少突胶质细胞的转录和功能稳定性至关重要。我们发现,LMNA/C 的水平随着祖细胞的分化而增加,并且分化的少突胶质细胞中 Lmna 的缺失会极大地改变其染色质可及性和转录特征。髓鞘形成胶质细胞中的 Lmna 缺失与正常的发育性髓鞘形成相容。然而,在完全分化的少突胶质细胞中检测到染色质可及性的改变,同时祖细胞基因的表达增加,脂质相关转录因子和线粒体膜内转录物的水平降低。这些变化伴随着大脑代谢的改变、少突胶质细胞中髓鞘相关脂质水平的降低以及线粒体结构的改变,从而导致髓鞘变薄和进行性恶化的运动表型的发展。总的来说,我们的数据确定了 LMNA/C 对维持形成髓鞘的少突胶质细胞的转录和功能稳定性是必不可少的。