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离子淌度-质谱分析揭示了外周髓鞘蛋白二聚体在外周神经病变中的作用。

Ion mobility-mass spectrometry reveals the role of peripheral myelin protein dimers in peripheral neuropathy.

机构信息

Department of Chemistry, University of Michigan, Ann Arbor, MI 48109.

Life Sciences Institute, University of Michigan, Ann Arbor, MI 48109.

出版信息

Proc Natl Acad Sci U S A. 2021 Apr 27;118(17). doi: 10.1073/pnas.2015331118.

Abstract

Peripheral myelin protein (PMP22) is an integral membrane protein that traffics inefficiently even in wild-type (WT) form, with only 20% of the WT protein reaching its final plasma membrane destination in myelinating Schwann cells. Misfolding of PMP22 has been identified as a key factor in multiple peripheral neuropathies, including Charcot-Marie-Tooth disease and Dejerine-Sottas syndrome. While biophysical analyses of disease-associated PMP22 mutants show altered protein stabilities, leading to reduced surface trafficking and loss of PMP22 function, it remains unclear how destabilization of PMP22 mutations causes mistrafficking. Here, native ion mobility-mass spectrometry (IM-MS) is used to compare the gas phase stabilities and abundances for an array of mutant PM22 complexes. We find key differences in the PMP22 mutant stabilities and propensities to form homodimeric complexes. Of particular note, we observe that severely destabilized forms of PMP22 exhibit a higher propensity to dimerize than WT PMP22. Furthermore, we employ lipid raft-mimicking SCOR bicelles to study PMP22 mutants, and find that the differences in dimer abundances are amplified in this medium when compared to micelle-based data, with disease mutants exhibiting up to 4 times more dimer than WT when liberated from SCOR bicelles. We combine our findings with previous cellular data to propose that the formation of PMP22 dimers from destabilized monomers is a key element of PMP22 mistrafficking.

摘要

外周髓鞘蛋白 (PMP22) 是一种整合膜蛋白,即使在野生型 (WT) 形式下,其运输效率也很低,只有 20%的 WT 蛋白到达施旺细胞中的最终质膜目的地。PMP22 的错误折叠已被确定为多种周围神经病变的关键因素,包括 Charcot-Marie-Tooth 病和 Dejerine-Sottas 综合征。虽然对与疾病相关的 PMP22 突变体的生物物理分析表明其蛋白稳定性发生改变,导致表面转运减少和 PMP22 功能丧失,但仍不清楚 PMP22 突变体的不稳定性如何导致运输错误。在这里,使用天然离子迁移质谱 (IM-MS) 比较了一系列突变 PM22 复合物的气相稳定性和丰度。我们发现 PMP22 突变体的稳定性和形成同源二聚体复合物的倾向存在关键差异。值得注意的是,我们观察到 PMP22 的严重不稳定形式比 WT PMP22 更倾向于二聚化。此外,我们采用模拟脂质筏的 SCOR 双胶束来研究 PMP22 突变体,并发现与基于胶束的数据相比,在这种介质中二聚体丰度的差异被放大,当从 SCOR 双胶束中释放出来时,疾病突变体的二聚体比 WT 多 4 倍。我们将我们的发现与以前的细胞数据结合起来,提出从不稳定的单体形成 PMP22 二聚体是 PMP22 运输错误的关键因素。

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