Aguirre Adan, Dupree Jeff L, Mangin J M, Gallo Vittorio
Center for Neuroscience Research, Children's National Medical Center, 111 Michigan Ave., NW, Washington, DC 20010-2970, USA.
Nat Neurosci. 2007 Aug;10(8):990-1002. doi: 10.1038/nn1938. Epub 2007 Jul 8.
Cellular strategies for oligodendrocyte regeneration and remyelination involve characterizing endogenous neural progenitors that are capable of generating oligodendrocytes during normal development and after demyelination, and identifying the molecular signals that enhance oligodendrogenesis from these progenitors. Using both gain- and loss-of-function approaches, we explored the role of epidermal growth factor receptor (EGFR) signaling in adult myelin repair and in oligodendrogenesis. We show that 2',3'-cyclic nucleotide 3'-phosphodiesterase (CNP) promoter-driven overexpression of human EGFR (hEGFR) accelerated remyelination and functional recovery following focal demyelination of mouse corpus callosum. Lesion repopulation by Cspg4+ (also known as NG2) Ascl1+ (also known as Mash1) Olig2+ progenitors and functional remyelination were accelerated in CNP-hEGFR mice compared with wild-type mice. EGFR overexpression in subventricular zone (SVZ) and corpus callosum during early postnatal development also expanded this NG2+Mash1+Olig2+ progenitor population and promoted SVZ-to-lesion migration, enhancing oligodendrocyte generation and axonal myelination. Analysis of hypomorphic EGFR-mutant mice confirmed that EGFR signaling regulates oligodendrogenesis and remyelination by NG2+Mash1+Olig2+ progenitors. EGFR targeting holds promise for enhancing oligodendrocyte regeneration and myelin repair.
少突胶质细胞再生和髓鞘再生的细胞策略包括鉴定内源性神经祖细胞,这些祖细胞在正常发育和脱髓鞘后能够产生少突胶质细胞,并确定增强这些祖细胞少突胶质细胞生成的分子信号。我们使用功能获得和功能丧失两种方法,探讨了表皮生长因子受体(EGFR)信号在成年髓鞘修复和少突胶质细胞生成中的作用。我们发现,2',3'-环核苷酸3'-磷酸二酯酶(CNP)启动子驱动的人EGFR(hEGFR)过表达加速了小鼠胼胝体局灶性脱髓鞘后的髓鞘再生和功能恢复。与野生型小鼠相比,CNP-hEGFR小鼠中Cspg4 +(也称为NG2)Ascl1 +(也称为Mash1)Olig2 +祖细胞的损伤再填充和功能性髓鞘再生加速。产后早期发育期间脑室下区(SVZ)和胼胝体中EGFR的过表达也扩大了这个NG2 + Mash1 + Olig2 +祖细胞群体,并促进了SVZ到损伤部位的迁移,增强了少突胶质细胞的生成和轴突髓鞘形成。对低表达EGFR突变小鼠的分析证实,EGFR信号通过NG2 + Mash1 + Olig2 +祖细胞调节少突胶质细胞生成和髓鞘再生。靶向EGFR有望增强少突胶质细胞再生和髓鞘修复。