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The molecular determinants of a universal prion acceptor

机译:通用朊病毒受体的分子决定因素

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摘要

In prion diseases, the species barrier limits the transmission of prions from one species to another. However, cross-species prion transmission is remarkably efficient in bank voles, and this phenomenon is mediated by the bank vole prion protein (BVPrP). The molecular determinants of BVPrP’s ability to function as a universal prion acceptor remain incompletely defined. Building on our finding that cultured cells expressing BVPrP can replicate both mouse and hamster prion strains, we systematically identified key residues in BVPrP that permit cross-species prion replication. We found that residues N155 and N170 of BVPrP, which are absent in mouse PrP but present in hamster PrP, are critical for cross-species prion replication. Additionally, BVPrP residues V112, I139, and M205, which are absent in hamster PrP but present in mouse PrP, are also required to enable replication of both mouse and hamster prions. Unexpectedly, we found that residues E227 and S230 near the C-terminus of BVPrP severely restrict prion accumulation following cross-species prion challenge, suggesting that they may have evolved to counteract the inherent propensity of BVPrP to misfold. PrP variants with an enhanced ability to replicate both mouse and hamster prions displayed accelerated spontaneous aggregation kinetics in vitro. These findings suggest that BVPrP’s unusual properties are governed by a key set of amino acids and that the enhanced misfolding propensity of BVPrP may enable cross-species prion replication.
机译:在朊病毒病中,物种屏障限制了朊病毒从一个物种到另一个物种的传播。然而,跨物种朊病毒传播在银行田鼠中非常有效,这种现象是由银行田鼠朊病毒蛋白 (BVPrP) 介导的。BVPrP 作为通用朊病毒受体发挥作用能力的分子决定因素仍未完全确定。基于我们发现表达 BVPrP 的培养细胞可以复制小鼠和仓鼠朊病毒菌株,我们系统地鉴定了 BVPrP 中允许跨物种朊病毒复制的关键残基。我们发现 BVPrP 的残基 N155 和 N170 在小鼠 PrP 中不存在,但存在于仓鼠 PrP 中,对于跨物种朊病毒复制至关重要。此外,仓鼠 PrP 中不存在但存在于小鼠 PrP 中的 BVPrP 残基 V112、I139 和 M205 也是实现小鼠和仓鼠朊病毒复制所必需的。出乎意料的是,我们发现 BVPrP C 末端附近的残基 E227 和 S230 在跨物种朊病毒攻击后严重限制了朊病毒的积累,这表明它们可能已经进化以抵消 BVPrP 固有的错误折叠倾向。具有增强复制小鼠和仓鼠朊病毒能力的 PrP 变体在体外显示出加速的自发聚集动力学。这些发现表明,BVPrP 的不寻常特性受一组关键氨基酸的控制,并且 BVPrP 增强的错误折叠倾向可能使跨物种朊病毒复制成为可能。

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