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首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Geranylgeranyl pyrophosphate is crucial for neuronal survival but has no special role in Purkinje cell degeneration in Niemann Pick type C1 disease
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Geranylgeranyl pyrophosphate is crucial for neuronal survival but has no special role in Purkinje cell degeneration in Niemann Pick type C1 disease

机译:Geranylgeranyl焦磷酸对神经元存活至关重要,但在Niemann Pick C1型疾病的Purkinje细胞变性中没有特殊作用

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摘要

Niemann Pick type C (NPC1) is a rare fatal hereditary cholesterol storage disease associated with a massive Purkinje cells loss. The mechanisms leading to neurodegeneration are still poorly understood. Different laboratories pointed to hypersensitivity to cytotoxic effects of statins (HMG-CoA reductase inhibitors) in NPC1 and suggested an underlying lack of geranylgeranyl pyrophosphate (GGPP). GGPP is a non-sterol isoprenoid essential for cell survival and differentiation. We measured GGPP levels in cerebella of a NPC1 mouse model and of wild-type littermates and found a physiological increase of GGPP levels between post-natal days 21 and 49 in wild-type mice but not in NPC mice. This further supports the hypothesis that Purkinje cell loss may be due to an extremely low level of GGPP. The progressive Purkinje cell loss in NPC starts between p21 and p49. To test the hypothesis, we used long-term organotypic slice cultures of NPC1 mice that display the natural history of NPC1 disease in vitro and tested if chronic administration of GGPP might prevent Purkinje cell loss. We did not see a beneficial effect. This suggests, in contrast to the expectations, that the relative lack of GGPP may not significantly contribute to mechanisms of Purkinje cell loss in NPC1.
机译:Niemann Pick C型(NPC1)是一种罕见的致命性遗传性胆固醇存储疾病,与大量的Purkinje细胞丢失有关。导致神经变性的机制仍然知之甚少。不同的实验室指出,NPC1对他汀类药物(HMG-CoA还原酶抑制剂)的细胞毒性作用过敏,并暗示根本缺乏Geranylgeranyl pyrophosphate(GGPP)。 GGPP是细胞存活和分化必不可少的非固醇类异戊二烯。我们在NPC1小鼠模型和野生型同窝幼仔的小脑中测量了GGPP水平,发现野生型小鼠在出生后21天到49天之间GGPP的生理增加,但在NPC小鼠中没有。这进一步支持了以下假设:浦肯野细胞丢失可能是由于GGPP的水平极低所致。 NPC中逐渐的浦肯野细胞损失始于p21和p49之间。为了检验该假设,我们使用了NPC1小鼠的长期器官切片培养物,该培养物在体外显示了NPC1疾病的自然病史,并测试了长期服用GGPP是否可以预防Purkinje细胞丢失。我们没有看到有益的效果。与预期相反,这表明相对缺乏GGPP可能不会显着促进NPC1中Purkinje细胞丢失的机制。

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