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RML 朊病毒通过 Mahogunin 和 Attractin 非依赖性途径发挥作用。

RML prions act through Mahogunin and Attractin-independent pathways.

机构信息

McLaughlin Research Institute; Great Falls, MT USA.

出版信息

Prion. 2013 Jul-Aug;7(4):267-71. doi: 10.4161/pri.25054. Epub 2013 May 31.

Abstract

While the conversion of the normal form of prion protein to a conformationally distinct pathogenic form is recognized to be the primary cause of prion disease, it is not clear how this leads to spongiform change, neuronal dysfunction and death. Mahogunin ring finger-1 (Mgrn1) and Attractin (Atrn) null mutant mice accumulate vacuoles throughout the brain that appear very similar to those associated with prion disease, but they do not accumulate the protease-resistant scrapie form of the prion protein or become sick. A study demonstrating an interaction between cytosolically-exposed prion protein and MGRN1 suggested that disruption of MGRN1 function may contribute to prion disease pathogenesis, but we recently showed that neither loss of MGRN1 nor MGRN1 overexpression influences the onset or progression of prion disease following intracerebral inoculation with Rocky Mountain Laboratory prions. Here, we show that loss of ATRN also has no effect on prion disease onset or progression and discuss possible mechanisms that could cause vacuolation of the central nervous system in Mgrn1 and Atrn null mutant mice and whether the same pathways might contribute to this intriguing phenotype in prion disease.

摘要

虽然将正常形式的朊病毒蛋白转化为构象上不同的致病性形式被认为是朊病毒病的主要原因,但尚不清楚这如何导致海绵状变化、神经元功能障碍和死亡。Mahogunin 环指蛋白-1(Mgrn1)和Attractin(Atrn)缺失突变小鼠的大脑中积累了空泡,这些空泡与朊病毒病相关的空泡非常相似,但它们不会积累对蛋白酶有抗性的朊病毒蛋白形式,也不会生病。一项研究表明,细胞质暴露的朊病毒蛋白与 MGRN1 之间存在相互作用,这表明 MGRN1 功能的破坏可能导致朊病毒病的发病机制,但我们最近表明,无论是 MGRN1 的缺失还是过表达都不会影响用落矶山实验室朊病毒颅内接种后朊病毒病的发病或进展。在这里,我们表明 ATRN 的缺失也不会影响朊病毒病的发病或进展,并讨论了可能导致 Mgrn1 和 Atrn 缺失突变小鼠中枢神经系统空泡化的机制,以及相同的途径是否可能导致朊病毒病中这种有趣的表型。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/64f7/3904309/28a3a384b4a2/prio-7-267-g1.jpg

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