Department of Neurology, Wayne State University, Detroit, Michigan, USA.
J Neurosci. 2010 Jan 13;30(2):600-8. doi: 10.1523/JNEUROSCI.4264-09.2010.
Patients with PMP22 deficiency present with focal sensory and motor deficits when peripheral nerves are stressed by mechanical force. It has been hypothesized that these focal deficits are due to mechanically induced conduction block (CB). To test this hypothesis, we induced 60-70% CB (defined by electrophysiological criteria) by nerve compression in an authentic mouse model of hereditary neuropathy with liability to pressure palsies (HNPP) with an inactivation of one of the two pmp22 alleles (pmp22(+/-)). Induction time for the CB was significantly shorter in pmp22(+/-) mice than that in pmp22(+/+) mice. This shortened induction was also found in myelin-associated glycoprotein knock-out mice, but not in the mice with deficiency of myelin protein zero, a major structural protein of compact myelin. Pmp22(+/-) nerves showed intact tomacula with no segmental demyelination in both noncompressed and compressed conditions, normal molecular architecture, and normal concentration of voltage-gated sodium channels by [(3)H]-saxitoxin binding assay. However, focal constrictions were observed in the axonal segments enclosed by tomacula, a pathological hallmark of HNPP. The constricted axons increase axial resistance to action potential propagation, which may hasten the induction of CB in Pmp22 deficiency. Together, these results demonstrate that a function of Pmp22 is to protect the nerve from mechanical injury.
患有 PMP22 缺乏症的患者在外周神经受到机械力的压力时会出现局灶性感觉和运动功能障碍。有人假设这些局灶性缺陷是由于机械诱导的传导阻滞 (CB) 引起的。为了验证这一假设,我们在遗传性神经病伴易压力麻痹(HNPP)的真实小鼠模型中,通过神经压迫诱导 60-70% 的 CB(通过电生理标准定义),该模型中两个 PMP22 等位基因之一失活(pmp22(+/-))。pmp22(+/-) 小鼠的 CB 诱导时间明显短于 pmp22(+/+) 小鼠。在髓鞘相关糖蛋白敲除小鼠中也发现了这种缩短的诱导,但在缺乏主要致密髓鞘结构蛋白髓鞘蛋白零的小鼠中则没有。在非压迫和压迫条件下,pmp22(+/-) 神经都显示出完整的 tomacula,没有节段性脱髓鞘,分子结构正常,电压门控钠通道的浓度正常,通过 [(3)H]-saxitoxin 结合测定。然而,在 tomacula 包围的轴突段观察到了局灶性狭窄,这是 HNPP 的病理特征。狭窄的轴突增加了动作电位传播的轴向阻力,这可能会加速 Pmp22 缺乏症中 CB 的诱导。总之,这些结果表明 Pmp22 的功能之一是保护神经免受机械损伤。