首页> 外文期刊>Journal of Neuropathology and Experimental Neurology: Official Journal of the American Association of Neuropathologists, Inc >Molecular, anatomical, and biochemical events associated with neurodegeneration in mice with Niemann-Pick type C disease.
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Molecular, anatomical, and biochemical events associated with neurodegeneration in mice with Niemann-Pick type C disease.

机译:与Niemann-Pick C型疾病小鼠的神经退行性变有关的分子,解剖和生化事件。

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In Niemann-Pick type C (NPC) disease, cholesterol associated with either apoE or apoB100 is taken up by cells in all tissues, including the central nervous system, through clathrin-coated pits and becomes trapped in late endosomes and lysosomes. This study defines the functional, biochemical, and molecular events that ensue as nerve cell death occurs. In mice homozygous for a mutation in NPC1, neuromuscular dysfunction begins at 5 weeks and death occurs at 13 weeks of age. Cholesterol accumulates in every tissue in the body. Purkinje cell loss in the cerebellum begins at 3 to 4 weeks of age and is nearly complete by 11 weeks. This neurodegeneration in the cerebellum is associated with increases in the levels of mRNA for caspase 1, caspase 3, NPC2, LipA, apoE, apoD, glial fibrillary acidic protein, and tumor necrosis factor-alpha, but not for most target genes of the LXR nuclear receptors. The level for apoER2 is significantly reduced. These studies show there is a compensatory increase in NPC2 and LipAin an attempt to overcome the physiological defect caused by the mutation. Nevertheless, neurodegeneration proceeds utilizing apoptosis with activation of glial cells, increased apoE and apoD synthesis, and increased cholesterol turnover across the CNS.
机译:在Niemann-Pick C型(NPC)疾病中,与apoE或apoB100相关的胆固醇通过包被网格蛋白的小孔被包括中枢神经系统在内的所有组织中的细胞吸收,并被困在晚期内体和溶酶体中。这项研究定义了随着神经细胞死亡的发生而发生的功能,生化和分子事件。在NPC1突变纯合子的小鼠中,神经肌肉功能障碍始于5周,死亡发生在13周龄。胆固醇积聚在人体的每个组织中。小脑浦肯野细胞的损失开始于3至4周龄,到11周时几乎完全消失。小脑中的这种神经退行性变与胱天蛋白酶1,胱天蛋白酶3,NPC2,LipA,apoE,apoD,神经胶质原纤维酸性蛋白和肿瘤坏死因子-α的mRNA水平升高有关,但与大多数LXR靶基因无关核受体。 apoER2的水平显着降低。这些研究表明,为了克服由突变引起的生理缺陷,NPC2和LipA的补偿性增加。然而,神经退行性变利用胶质细胞活化引起的细胞凋亡,增加的apoE和apoD合成以及整个CNS的胆固醇更新来进行。

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