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异常的 ERK 1/2 复合物在感染瘙痒病的 GT1-1 细胞中的激活和定位。

Aberrant ERK 1/2 complex activation and localization in scrapie-infected GT1-1 cells.

机构信息

Laboratory of Prion Biology, Neurobiology Sector, Scuola Internazionale Superiore di Studi Avanzati (SISSA), via Bonomea 265, I-34136 Trieste, Italy.

出版信息

Mol Neurodegener. 2010 Aug 9;5:29. doi: 10.1186/1750-1326-5-29.

Abstract

BACKGROUND

Fatal neurodegenerative disorders such as Creutzfeldt-Jakob and Gerstmann-Sträussler-Scheinker diseases in humans, scrapie and bovine spongiform encephalopathy in animals, are characterized by the accumulation in the brain of a pathological form of the prion protein (PrP) denominated PrPSc. The latter derives from the host cellular form, PrPC, through a process whereby portions of its alpha-helical and coil structures are refolded into beta-sheet structures.

RESULTS

In this work, the widely known in vitro model of prion replication, hypothalamic GT1-1 cell line, was used to investigate cellular and molecular responses to prion infection. The MAP kinase cascade was dissected to assess the phosphorylation levels of src, MEK 1/2 and ERK 1/2 signaling molecules, both before and after prion infection. Our findings suggest that prion replication leads to a hyper-activation of this pathway. Biochemical analysis was complemented with immunofluorescence studies to map the localization of the ERK complex within the different cellular compartments. We showed how the ERK complex relocates in the cytosol upon prion infection. We correlated these findings with an impairment of cell growth in prion-infected GT1-1 cells as probed by MTT assay. Furthermore, given the persistent urgency in finding compounds able to cure prion infected cells, we tested the effects on the ERK cascade of two molecules known to block prion replication in vitro, quinacrine and Fab D18. We were able to show that while these two compounds possess similar effects in curing prion infection, they affect the MAP kinase cascade differently.

CONCLUSIONS

Taken together, our results help shed light on the molecular events involved in neurodegeneration and neuronal loss in prion infection and replication. In particular, the combination of chronic activation and aberrant localization of the ERK complex may lead to a lack of essential neuroprotective and survival factors. Interestingly, these data seem to define some common traits with other neurodegenerative disorders such as, for example, Alzheimer's disease.

摘要

背景

人类中的克雅氏病和格斯特曼-斯召斯列综合征等致命神经退行性疾病、动物中的瘙痒病和牛海绵状脑病,其特征是大脑中病理性形式的朊病毒蛋白(PrP)积累,称为 PrPSc。后者来源于宿主细胞形式 PrPC,通过部分α螺旋和线圈结构重新折叠成β-折叠结构的过程。

结果

在这项工作中,使用了广泛已知的朊病毒复制体外模型,下丘脑 GT1-1 细胞系,来研究细胞和分子对朊病毒感染的反应。剖析了 MAP 激酶级联反应,以评估在朊病毒感染前后 src、MEK 1/2 和 ERK 1/2 信号分子的磷酸化水平。我们的发现表明,朊病毒复制会导致该途径的过度激活。生化分析辅以免疫荧光研究,以绘制 ERK 复合物在不同细胞区室中的定位图。我们展示了朊病毒感染后 ERK 复合物如何在细胞质中重新定位。我们将这些发现与 MTT 测定法探测到的朊病毒感染 GT1-1 细胞中的细胞生长受损相关联。此外,鉴于寻找能够治愈朊病毒感染细胞的化合物的持续迫切需要,我们测试了两种已知在体外阻断朊病毒复制的分子对 ERK 级联的影响,氯喹和 Fab D18。我们能够表明,尽管这两种化合物在治愈朊病毒感染方面具有相似的作用,但它们对 MAP 激酶级联的影响不同。

结论

总之,我们的结果有助于阐明朊病毒感染和复制过程中涉及的分子事件。特别是,ERK 复合物的慢性激活和异常定位的组合可能导致缺乏必要的神经保护和存活因子。有趣的是,这些数据似乎与其他神经退行性疾病(例如阿尔茨海默病)具有一些共同特征。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/10fe/2928767/0c3bfe60fe8d/1750-1326-5-29-1.jpg

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