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Neuropathology of the Mcoln1(-/-) knockout mouse model of mucolipidosis type IV.

机译:Mcoln1(-/-)基因敲除小鼠粘液脂血症IV型的神经病理学。

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摘要

The recently developed Mcoln1(-/-) knockout mouse provides a novel model for analyzing mucolipin 1 function and mucolipidosis type IV disease. Here we characterize the neuropathology of Mcoln1(-/-) mouse at the end stage. Evidence of ganglioside accumulation, including increases in GM2, GM3, and GD3 and redistribution of GM1, was found throughout the central nervous system (CNS) independent of significant cholesterol accumulation. Unexpectedly, colocalization studies using immunofluorescence confocal microscopy revealed that GM1 and GM2 were present in separate vesicles within individual neurons. While GM2 was significantly colocalized with LAMP2, consistent with late-endosomal/lysosomal processing, some GM2-immunoreactivity occurred in LAMP2-negative sites, suggesting involvement of other vesicular systems. P62/Sequestosome 1 (P62/SQSTM1) inclusions were also identified in the CNS of the Mcoln1(-/-) mouse, suggesting deficiencies in protein degradation. Glial cell activation was increased in brain, and there was evidence of reduced myelination in cerebral and cerebellar white matter tracts. Autofluorescent material accumulated throughout the brains of the knockout mice. Finally, axonal spheroids were prevalent in white matter tracts and Purkinje cell axons. This neuropathological characterization of the Mcoln1(-/-) mouse provides an important step in understanding how mucolipin 1 loss of function affects the CNS and contributes to mucolipidosis type IV disease.
机译:最近开发的Mcoln1(-/-)敲除小鼠提供了一种新型模型,用于分析粘蛋白1功能和IV型粘脂病。在这里,我们表征Mcoln1(-/-)小鼠在末期的神经病理学。在整个中枢神经系统(CNS)中均发现了神经节苷脂积累的证据,包括GM2,GM3和GD3的增加以及GM1的重新分布,而与胆固醇的大量积累无关。出乎意料的是,使用免疫荧光共聚焦显微镜进行的共定位研究表明,GM1和GM2存在于单个神经元的单独囊泡中。尽管GM2与LAMP2显着共定位,与后期的内体/溶酶体加工相一致,但LAMP2阴性部位发生了某些GM2免疫反应,提示其他囊泡系统也参与其中。在Mcoln1(-/-)小鼠的中枢神经系统中还发现了P62 / Sequestosome 1(P62 / SQSTM1)内含物,表明蛋白质降解不足。脑中神经胶质细胞的激活增加,并且有证据表明脑和小脑白质束的髓鞘减少。自体荧光物质在敲除小鼠的大脑中积累。最后,在白质区和浦肯野细胞轴突中普遍存在轴突球体。 Mcoln1(-/-)小鼠的这种神经病理学特征为了解粘蛋白1功能丧失如何影响CNS并导致IV型粘膜脂血症提供了重要的一步。

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