Trapp B D, Small J A, Pulley M, Khoury G, Scangos G A
Department of Neurology, Johns Hopkins University, Baltimore, MD.
Ann Neurol. 1988 Jan;23(1):38-48. doi: 10.1002/ana.410230108.
JC virus (JCV) causes the chronic human demyelinating disease progressive multifocal leukoencephalopathy. Because of host range restrictions, experimental models of JCV-induced demyelination have not been available. The restricted tropism of JCV infectivity has recently been overcome by the production of transgenic mice that contain the early region of JCV in all cells. This portion of the DNA encodes JCV T-antigens. These mice display a dysmyelinating phenotype, the severity of which is related to the level of JCV early region expression in brain. With the use of immunocytochemistry and in situ hybridization, we characterized morphologically myelin-specific and JCV gene expression in a severely affected strain of these mice. Our results suggest that expression of JCV T-antigens occurs predominantly in oligodendrocytes and is the primary cause of dysmyelination. Affected oligodendrocytes do not myelinate axons properly. However, they express myelin-specific genes and display some of the morphological phenotypes of early stages of myelination. A decreased ratio between levels of transcriptional and translational products of genes encoding the major structural proteins of central nervous system myelin was apparent. These results suggest that JCV T-antigens arrest the maturation of oligodendrocytes and inhibit the production of myelin. These results also demonstrate that JCV transgenic mice are a good model for investigating mechanisms of JCV-induced demyelinating lesions in progressive multifocal leukoencephalopathy.
JC病毒(JCV)可引发慢性人类脱髓鞘疾病——进行性多灶性白质脑病。由于宿主范围限制,尚未有JCV诱导脱髓鞘的实验模型。最近,通过培育在所有细胞中均含有JCV早期区域的转基因小鼠,克服了JCV感染性的嗜性限制。该DNA部分编码JCV T抗原。这些小鼠呈现出脱髓鞘表型,其严重程度与脑中JCV早期区域的表达水平相关。利用免疫细胞化学和原位杂交技术,我们对这些小鼠中一个严重受影响品系的髓鞘特异性和JCV基因表达进行了形态学表征。我们的结果表明,JCV T抗原的表达主要发生在少突胶质细胞中,并且是脱髓鞘的主要原因。受影响的少突胶质细胞不能正常地使轴突形成髓鞘。然而,它们表达髓鞘特异性基因,并呈现出髓鞘形成早期阶段的一些形态学表型。中枢神经系统髓鞘主要结构蛋白编码基因的转录和翻译产物水平之间的比率明显降低。这些结果表明,JCV T抗原会阻止少突胶质细胞的成熟并抑制髓鞘的产生。这些结果还证明,JCV转基因小鼠是研究进行性多灶性白质脑病中JCV诱导脱髓鞘病变机制的良好模型。