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首页> 外文期刊>Molecular and cellular neurosciences >Aged PrP null mice show defective processing of neuregulins in the peripheral nervous system
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Aged PrP null mice show defective processing of neuregulins in the peripheral nervous system

机译:老化的PrP无效小鼠显示外周神经系统中神经调节蛋白的加工不良

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A prion, a protease-resistant conformer of the cellular prion protein (PrP~C), is the causative agent of transmissible spongiform encephalopathies or prion diseases. While this property is well established for the aberrantly folded protein, the physiological function of PrP~C remains elusive. Among different putative functions, the non-pathogenic protein isoform PrP~C is involved in several cellular processes. Here, we show that PrP~C regulates the cleavage of neuregulin-1 proteins (NRG1). Neuregulins provide key axonal signals that regulate several processes, including glial cells proliferation, survival and myelination. Interestingly, mice devoid of PrP~C (Prnp~(0/0)) were recently shown to have a late-onset demyelinating disease in the peripheral nervous system (PNS) but not in the central nervous system (CNS). We found that NRG1 processing is developmentally regulated in the PNS and, by comparing wildtype and Prnp~(0/0) mice, that PrP~C influences NRG1 processing in old, but not in young, animals. In addition, we found that also the processing of neuregulin-3, another neuregulin family member, is altered in the PNS of Prnp~(0/0) mice. These differences in neuregulin proteins processing are not paralleled in the CNS, thus suggesting a different cellular function for PrP~C between the CNS and the PNS.
机译:ion病毒是细胞病毒蛋白(PrP〜C)的蛋白酶抗性构象,是可传播的海绵状脑病或病毒疾病的病原体。尽管对于异常折叠的蛋白质已经很好地确立了该性质,但是PrP_C的生理功能仍然难以捉摸。在不同的假定功能中,非致病性蛋白同工型PrP〜C涉及多个细胞过程。在这里,我们表明PrP〜C调节神经调节蛋白1(NRG1)的切割。神经调节蛋白提供关键的轴突信号,调节多种过程,包括神经胶质细胞的增殖,存活和髓鞘形成。有趣的是,最近发现缺乏PrP〜C(Prnp〜(0/0))的小鼠在周围神经系统(PNS)而非中枢神经系统(CNS)患有迟发性脱髓鞘疾病。我们发现NRG1加工在PNS中受到发育调控,并且通过比较野生型和Prnp〜(0/0)小鼠,PrP〜C影响了老年动物的NRG1加工,但未影响年轻动物。此外,我们发现Prnp〜(0/0)小鼠的PNS中另一个神经调节蛋白家族成员neuregulin-3的加工也发生了变化。神经调节蛋白加工过程中的这些差异在中枢神经系统中无可比拟,因此表明中枢神经系统和PNS之间的PrP〜C细胞功能有所不同。

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