Lee Sooyeon, Amici Stephanie, Tavori Hagai, Zeng Waylon M, Freeland Steven, Fazio Sergio, Notterpek Lucia
Departments of Neuroscience and Neurology, McKnight Brain Institute, College of Medicine, University of Florida, Gainesville, Florida 32611, and.
Knight Cardiovascular Institute, Center of Preventive Cardiology, Oregon Health and Science University, Portland, Oregon 97239.
J Neurosci. 2014 Nov 26;34(48):16140-52. doi: 10.1523/JNEUROSCI.1908-14.2014.
Haploinsufficiency of peripheral myelin protein 22 (PMP22) causes hereditary neuropathy with liability to pressure palsies, a peripheral nerve lesion induced by minimal trauma or compression. As PMP22 is localized to cholesterol-enriched membrane domains that are closely linked with the underlying actin network, we asked whether the myelin instability associated with PMP22 deficiency could be mediated by involvement of the protein in actin-dependent cellular functions and/or lipid raft integrity. In peripheral nerves and cells from mice with PMP22 deletion, we assessed the organization of filamentous actin (F-actin), and actin-dependent cellular functions. Using in vitro models, we discovered that, in the absence of PMP22, the migration and adhesion capacity of Schwann cells and fibroblasts are similarly impaired. Furthermore, PMP22-deficient Schwann cells produce shortened myelin internodes, and display compressed axial cell length and collapsed lamellipodia. During early postnatal development, F-actin-enriched Schmidt-Lanterman incisures do not form properly in nerves from PMP22(-/-) mice, and the expression and localization of molecules associated with uncompacted myelin domains and lipid rafts, including flotillin-1, cholesterol, and GM1 ganglioside, are altered. In addition, we identified changes in the levels and distribution of cholesterol and ApoE when PMP22 is absent. Significantly, cholesterol supplementation of the culture medium corrects the elongation and migration deficits of PMP22(-/-) Schwann cells, suggesting that the observed functional impairments are directly linked with cholesterol deficiency of the plasma membrane. Our findings support a novel role for PMP22 in the linkage of the actin cytoskeleton with the plasma membrane, likely through regulating the cholesterol content of lipid rafts.
外周髓磷脂蛋白22(PMP22)单倍剂量不足会导致遗传性压力易感性神经病,这是一种由轻微创伤或压迫引起的周围神经病变。由于PMP22定位于富含胆固醇的膜结构域,这些结构域与潜在的肌动蛋白网络紧密相连,我们不禁要问,与PMP22缺乏相关的髓磷脂不稳定性是否可能是由该蛋白参与肌动蛋白依赖性细胞功能和/或脂筏完整性所介导的。在PMP22基因缺失小鼠的外周神经和细胞中,我们评估了丝状肌动蛋白(F-肌动蛋白)的组织情况以及肌动蛋白依赖性细胞功能。利用体外模型,我们发现,在缺乏PMP22的情况下,雪旺细胞和成纤维细胞的迁移和黏附能力同样受损。此外,PMP22缺陷型雪旺细胞产生的髓鞘节间缩短,轴向细胞长度压缩,板状伪足塌陷。在出生后早期发育过程中,PMP22(-/-)小鼠神经中富含F-肌动蛋白的施密特-兰特尔曼切迹无法正常形成,与未压实的髓鞘结构域和脂筏相关的分子,包括小窝蛋白-1、胆固醇和GM1神经节苷脂的表达和定位发生改变。此外,我们还发现当缺乏PMP22时,胆固醇和载脂蛋白E的水平及分布会发生变化。值得注意的是,向培养基中补充胆固醇可纠正PMP22(-/-)雪旺细胞的伸长和迁移缺陷,这表明观察到的功能障碍与质膜胆固醇缺乏直接相关。我们的研究结果支持PMP22在肌动蛋白细胞骨架与质膜的连接中发挥新作用,可能是通过调节脂筏的胆固醇含量来实现的。