Department of Physiology.
Solomon H. Snyder Department of Neuroscience.
J Clin Invest. 2018 Dec 3;128(12):5434-5447. doi: 10.1172/JCI122481. Epub 2018 Nov 5.
Itch (pruritis) and pain represent two distinct sensory modalities; yet both have evolved to alert us to potentially harmful external stimuli. Compared with pain, our understanding of itch is still nascent. Here, we report a new clinical case of debilitating itch and altered pain perception resulting from the heterozygous de novo p.L811P gain-of-function mutation in NaV1.9, a voltage-gated sodium (NaV) channel subtype that relays sensory information from the periphery to the spine. To investigate the role of NaV1.9 in itch, we developed a mouse line in which the channel is N-terminally tagged with a fluorescent protein, thereby enabling the reliable identification and biophysical characterization of NaV1.9-expressing neurons. We also assessed NaV1.9 involvement in itch by using a newly created NaV1.9-/- and NaV1.9L799P/WT mouse model. We found that NaV1.9 is expressed in a subset of nonmyelinated, nonpeptidergic small-diameter dorsal root ganglia (DRGs). In WT DRGs, but not those of NaV1.9-/- mice, pruritogens altered action potential parameters and NaV channel gating properties. Additionally, NaV1.9-/- mice exhibited a strong reduction in acute scratching behavior in response to pruritogens, whereas NaV1.9L799P/WT mice displayed increased spontaneous scratching. Altogether, our data suggest an important contribution of NaV1.9 to itch signaling.
瘙痒(瘙痒症)和疼痛代表两种不同的感觉模式;然而,两者都进化为提醒我们注意潜在的有害外部刺激。与疼痛相比,我们对瘙痒的理解仍处于起步阶段。在这里,我们报告了一个新的临床案例,即由于 NaV1.9 的杂合性从头 p.L811P 获得性功能突变导致的致残性瘙痒和改变的疼痛感知,NaV1.9 是一种电压门控钠 (NaV) 通道亚型,将感觉信息从外围传递到脊柱。为了研究 NaV1.9 在瘙痒中的作用,我们开发了一种小鼠系,其中通道在 N 端被荧光蛋白标记,从而能够可靠地识别和对 NaV1.9 表达神经元进行生物物理特征分析。我们还通过使用新创建的 NaV1.9-/- 和 NaV1.9L799P/WT 小鼠模型评估了 NaV1.9 在瘙痒中的参与。我们发现 NaV1.9 在非髓鞘、非肽能小直径背根神经节 (DRG) 的亚群中表达。在 WT DRG 中,但不在 NaV1.9-/- 小鼠的 DRG 中,瘙痒剂改变了动作电位参数和 NaV 通道门控特性。此外,NaV1.9-/- 小鼠对瘙痒剂的急性搔抓行为明显减少,而 NaV1.9L799P/WT 小鼠则表现出自发性搔抓增加。总的来说,我们的数据表明 NaV1.9 对瘙痒信号具有重要贡献。