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Schwann cells ER-associated degradation contributes to myelin maintenance in adult nerves and limits demyelination in CMT1B mice

机译:雪旺细胞内质网相关的降解有助于维持成年神经的髓磷脂并限制CMT1B小鼠的脱髓鞘

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摘要

In the peripheral nervous system (PNS) myelinating Schwann cells synthesize large amounts of myelin protein zero (P0) glycoprotein, an abundant component of peripheral nerve myelin. In humans, mutations in P0 cause the demyelinating Charcot-Marie-Tooth 1B (CMT1B) neuropathy, one of the most diffused genetic disorders of the PNS. We previously showed that several mutations, such as the deletion of serine 63 (P0-S63del), result in misfolding and accumulation of P0 in the endoplasmic reticulum (ER), with activation of the unfolded protein response (UPR). In addition, we observed that S63del mouse nerves display the upregulation of many ER-associated degradation (ERAD) genes, suggesting a possible involvement of this pathway in the clearance of the mutant P0. In ERAD in fact, misfolded proteins are dislocated from the ER and targeted for proteasomal degradation. Taking advantage of inducible cells that express the ER retained P0, here we show that the P0-S63del glycoprotein is degraded via ERAD. Moreover, we provide strong evidence that the Schwann cell-specific ablation of the ERAD factor Derlin-2 in S63del nerves exacerbates both the myelin defects and the UPR in vivo, unveiling a protective role for ERAD in CMT1B neuropathy. We also found that lack of Derlin-2 affects adult myelin maintenance in normal nerves, without compromising their development, pinpointing ERAD as a previously unrecognized player in preserving Schwann cells homeostasis in adulthood. Finally, we provide evidence that treatment of S63del peripheral nerve cultures with N-Acetyl-D-Glucosamine (GlcNAc), known to enhance protein quality control pathways in C.elegans, ameliorates S63del nerve myelination ex vivo. Overall, our study suggests that potentiating adaptive ER quality control pathways might represent an appealing strategy to treat both conformational and age-related PNS disorders.
机译:在周围神经系统(PNS)中,有髓神经鞘雪旺细胞合成大量的髓磷脂蛋白零(P0)糖蛋白,这是周围神经髓鞘的丰富成分。在人类中,P0突变会引起脱髓鞘的Charcot-Marie-Tooth 1B(CMT1B)神经病,这是PNS传播最广泛的遗传性疾病之一。我们以前显示了几个突变,例如丝氨酸63(P0-S63del)的缺失,导致内质网(ER)的折叠错误和P0的积累,并激活了未折叠的蛋白应答(UPR)。此外,我们观察到S63del小鼠神经显示出许多与ER相关的降解(ERAD)基因的上调,表明该途径可能参与了突变体P0的清除。实际上,在ERAD中,错误折叠的蛋白质从ER脱位并靶向蛋白酶体降解。利用表达ER保留的P0的可诱导细胞,在这里我们显示P0-S63del糖蛋白通过ERAD降解。此外,我们提供有力的证据表明,S63del神经中ERAD因子Derlin-2的Schwann细胞特异性消融加重了体内髓鞘缺损和UPR,揭示了ERAD在CMT1B神经病中的保护作用。我们还发现,缺乏Derlin-2会影响正常神经中成人髓磷脂的维持,而不会损害它们的发育,从而将ERAD定位为保持成年雪旺细胞稳态的先前未被认识的参与者。最后,我们提供的证据表明,已知可以增强线虫蛋白质质量控​​制途径的N-乙酰基-D-葡萄糖胺(GlcNAc)对S63del周围神经培养的治疗可以改善S63del神经的髓鞘形成。总体而言,我们的研究表明,增强的适应性ER质量控制途径可能代表一种治疗构象性和年龄相关性PNS障碍的诱人策略。

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