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首页> 外文期刊>Human Molecular Genetics >P0S63del impedes the arrival of wild-type P0 glycoprotein to myelin in CMT1B mice.
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P0S63del impedes the arrival of wild-type P0 glycoprotein to myelin in CMT1B mice.

机译:P0S63del阻止CMT1B小鼠中野生型P0糖蛋白到达髓磷脂。

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摘要

More than 120 mutations in the Myelin Protein Zero gene (MPZ, P0) cause various forms of hereditary neuropathy. Two human mutations encoding either P0S63C or P0S63del have been shown to cause demyelination in mice through different gain of function pathomechanisms. P0S63del, for example, is retained in the endoplasmic reticulum (ER) and elicits a pathogenetic unfolded protein response (UPR). As P0 likely forms oligomers, another gain of abnormal function could include a dominant-negative interaction between P0S63del and normal P0 (P0wt). To test this idea, we generated a transgenic mouse that expressed a form of P0wt with a myc epitope tag at the C terminus (P0ct-myc). We show that P0ct-myc is trafficked and functions like P0wt, thus providing a new tool to study P0 in vivo. In mice that express both P0ct-myc and P0S63del, P0S63del specifically delays the transit of P0ct-myc through the ER and reduces the level of P0wt in the myelin sheath by half-a level previously shown to cause demyelination in mice and humans. Surprisingly, P0ct-myc does not co-immunoprecipitate with P0S63del, suggesting an indirect interaction. Thus, P0S63del causes not only a UPR-related toxic mechanism, but also a dominant-negative effect on P0wt that probably contributes to demyelinating neuropathy.
机译:髓磷脂蛋白质零基因(MPZ,P0)中的120多个突变引起各种形式的遗传性神经病。已显示两种编码P0S63C或P0S63del的人类突变通过不同的功能病理机制引起小鼠脱髓鞘。例如,POS63del被保留在内质网(ER)中并引发病原性未折叠蛋白应答(UPR)。由于P0可能形成寡聚物,异常功能的另一个获得可能包括P0S63del与正常P0(P0wt)之间的显性负相互作用。为了测试这个想法,我们生成了一个转基因小鼠,该小鼠在C末端(p0ct-myc)表达了带有myc表位标签的P0wt形式。我们表明,P0ct-myc被贩运,其功能类似于P0wt,从而提供了一种在体内研究P0的新工具。在同时表达P0ct-myc和P0S63del的小鼠中,P0S63del特异性地延迟了P0ct-myc通过ER的转运,并使髓鞘中的P0wt水平降低了先前显示的引起小鼠和人类脱髓鞘的水平的一半。令人惊讶地,P0ct-myc不能与P0S63del共免疫沉淀,表明是间接相互作用。因此,P0S63del不仅引起UPR相关的毒性机制,而且对P0wt产生显性负作用,这可能导致脱髓鞘性神经病。

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