Larsen Peter H, DaSilva Angelika Goncalves, Conant Katherine, Yong V Wee
Hotchkiss Brain Institute, Department of Clinical Neurosciences, University of Calgary, Calgary, Alberta, T2N 4N1, Canada.
J Neurosci. 2006 Feb 22;26(8):2207-14. doi: 10.1523/JNEUROSCI.1880-05.2006.
The matrix metalloproteinases (MMPs) are implicated in several activities within the nervous system. Although many functions of abnormally elevated MMPs are undesirable, the discrete expression of particular MMP members can have beneficial roles. We previously found that MMP-9 expressed locally around a demyelinating lesion of the spinal cord of adult mice facilitated remyelination. In the current study, we have addressed whether and how MMPs might be required for myelin formation in normal ontogeny. Using a probe for multiple MMPs and the developing mouse optic nerve, we found two members, MMP-9 and -12, to be upregulated during the period of myelin formation. These MMPs partake in myelinogenesis because myelination in the corpus callosum of MMP-9 and/or MMP-12 null mice was deficient from postnatal days 7 to 14 compared with that of wild-type mice. The deficient myelination was correlated with fewer mature oligodendrocytes, but similar precursor cell numbers, in MMP null animals compared with wild type. Because an important growth factor for oligodendrocyte maturation is insulin-like growth factor-1 (IGF-1), we addressed whether this was involved in the deficient myelination in MMP null mice. Indeed, the addition of IGF-1 normalized the lack of maturation of oligodendrocytes that occurred in cultures from MMP-12 null mice. Furthermore, we determined that IGF binding protein 6 (IGFBP-6), which sequesters IGF-1, was a substrate for MMP processing. Finally, we found IGFBP-6 levels to remain high in MMP-deficient mice. These results reveal a novel function for MMP-9 and -12 in developmental myelination likely through regulating IGF-1 bioavailability.
基质金属蛋白酶(MMPs)与神经系统的多种活动有关。虽然MMPs异常升高的许多功能是有害的,但特定MMP成员的离散表达可能具有有益作用。我们之前发现,成年小鼠脊髓脱髓鞘病变周围局部表达的MMP-9促进了髓鞘再生。在当前研究中,我们探讨了在正常个体发育过程中,MMPs是否以及如何参与髓鞘形成。使用针对多种MMPs的探针和发育中的小鼠视神经,我们发现MMP-9和-12这两个成员在髓鞘形成期间上调。这些MMPs参与髓鞘生成,因为与野生型小鼠相比,MMP-9和/或MMP-12基因敲除小鼠在出生后第7至14天胼胝体的髓鞘形成不足。与野生型相比,MMP基因敲除动物中髓鞘形成不足与成熟少突胶质细胞数量减少但前体细胞数量相似有关。由于少突胶质细胞成熟的一种重要生长因子是胰岛素样生长因子-1(IGF-1),我们探讨了它是否与MMP基因敲除小鼠的髓鞘形成不足有关。事实上,添加IGF-1可使MMP-12基因敲除小鼠培养物中发生 的少突胶质细胞成熟缺陷恢复正常。此外,我们确定,隔离IGF-1的IGF结合蛋白6(IGFBP-6)是MMP加工的底物。最后,我们发现MMP缺陷小鼠中IGFBP-6水平仍然很高。这些结果揭示了MMP-9和-12在发育性髓鞘形成中的新功能,可能是通过调节IGF-1的生物利用度实现的。