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c-Abl 诱导的少突胶质细胞转录因子 2 磷酸化调节少突胶质前体细胞的增殖。

c-Abl-induced Olig2 phosphorylation regulates the proliferation of oligodendrocyte precursor cells.

机构信息

The Brain Science Center, Beijing Institute of Basic Medical Sciences, Beijing, China.

School of Basic Medicine, Qingdao University, Qingdao, China.

出版信息

Glia. 2022 Jun;70(6):1084-1099. doi: 10.1002/glia.24157. Epub 2022 Feb 13.

Abstract

Oligodendrocytes (OLs), the myelinating cells in the central nervous system (CNS), are differentiated from OL progenitor cells (OPCs). The proliferation of existing OPCs is indispensable for myelination during CNS development and remyelination in response to demyelination stimulation. The transcription factor Olig2 is required for the specification of OLs and is expressed in the OL lineage. However, the post-translational modification of Olig2 in the proliferation of OPCs is poorly understood. Herein, we identified that c-Abl directly phosphorylates Olig2 mainly at the Tyr137 site, and that Olig2 phosphorylation is essential for OPC proliferation. The expression levels of c-Abl gradually decreased with brain development; moreover, c-Abl was highly expressed in OPCs. OL-specific c-Abl knockout at the developmental stage led to an insufficient proliferation of OPCs, a decreased expression of myelin-related genes, and myelination retardation. Accordingly, a c-Abl-specific kinase inhibitor suppressed OPC proliferation in vitro. Furthermore, we observed that OL-specific c-Abl knockout reduced OPC proliferation and remyelination in a cuprizone model of demyelination. In addition, we found that nilotinib, a clinically used c-Abl inhibitor, decreased the expression of myelin basic protein (Mbp) and motor coordination in mice, indicating a neurological side effect of a long-term administration of the c-Abl inhibitor. Thus, we identified the important role of c-Abl in OLs during developmental myelination and remyelination in a disease model.

摘要

少突胶质细胞(OLs)是中枢神经系统(CNS)中的髓鞘形成细胞,由 OL 祖细胞(OPCs)分化而来。现有 OPCs 的增殖对于 CNS 发育期间的髓鞘形成和对脱髓鞘刺激的再髓鞘化是必不可少的。转录因子 Olig2 是 OL 谱系特化所必需的,并且在 OL 谱系中表达。然而,OPC 增殖中 Olig2 的翻译后修饰知之甚少。在此,我们鉴定出 c-Abl 主要在 Tyr137 位点直接磷酸化 Olig2,并且 Olig2 磷酸化对于 OPC 增殖是必需的。c-Abl 的表达水平随大脑发育而逐渐降低;此外,c-Abl 在 OPCs 中高度表达。在发育阶段特异性敲除 OL 中的 c-Abl 导致 OPC 增殖不足、髓鞘相关基因表达降低和髓鞘形成迟缓。因此,c-Abl 特异性激酶抑制剂在体外抑制 OPC 增殖。此外,我们观察到脱髓鞘的杯状醇模型中 OL 特异性 c-Abl 敲除减少了 OPC 增殖和再髓鞘化。此外,我们发现临床上使用的 c-Abl 抑制剂尼罗替尼降低了小鼠中髓鞘碱性蛋白(Mbp)的表达和运动协调能力,表明长期使用 c-Abl 抑制剂存在神经学副作用。因此,我们确定了 c-Abl 在 OL 发育性髓鞘形成和疾病模型中再髓鞘化过程中的重要作用。

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