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小分子抑制 STOML3 寡聚化可逆转病理性机械性超敏反应。

Small-molecule inhibition of STOML3 oligomerization reverses pathological mechanical hypersensitivity.

机构信息

Department of Neuroscience, Max Delbrück Center for Molecular Medicine, Berlin, Germany.

Department of Biomedical Sciences, Section of Cytomorphology, University of Cagliari, Monserrato (California), Italy.

出版信息

Nat Neurosci. 2017 Feb;20(2):209-218. doi: 10.1038/nn.4454. Epub 2016 Dec 12.

Abstract

The skin is equipped with specialized mechanoreceptors that allow the perception of the slightest brush. Indeed, some mechanoreceptors can detect even nanometer-scale movements. Movement is transformed into electrical signals via the gating of mechanically activated ion channels at sensory endings in the skin. The sensitivity of Piezo mechanically gated ion channels is controlled by stomatin-like protein-3 (STOML3), which is required for normal mechanoreceptor function. Here we identify small-molecule inhibitors of STOML3 oligomerization that reversibly reduce the sensitivity of mechanically gated currents in sensory neurons and silence mechanoreceptors in vivo. STOML3 inhibitors in the skin also reversibly attenuate fine touch perception in normal mice. Under pathophysiological conditions following nerve injury or diabetic neuropathy, the slightest touch can produce pain, and here STOML3 inhibitors can reverse mechanical hypersensitivity. Thus, small molecules applied locally to the skin can be used to modulate touch and may represent peripherally available drugs to treat tactile-driven pain following neuropathy.

摘要

皮肤配备了专门的机械感受器,可以感知最轻微的刷子触感。事实上,一些机械感受器甚至可以检测到纳米级别的运动。运动通过皮肤感觉末梢处机械激活的离子通道的门控转化为电信号。Piezo 机械门控离子通道的敏感性受抑钠通道蛋白 3(STOML3)控制,其对于正常机械感受器功能是必需的。在这里,我们鉴定了 STOML3 寡聚化的小分子抑制剂,其可逆地降低感觉神经元中机械门控电流的敏感性,并在体内沉默机械感受器。皮肤中的 STOML3 抑制剂还可逆地减弱正常小鼠的精细触摸感知。在神经损伤或糖尿病性神经病后的病理生理条件下,最轻微的触摸也会产生疼痛,而 STOML3 抑制剂可以逆转机械性超敏反应。因此,局部应用于皮肤的小分子可以用于调节触觉,并且可能代表周围可用于治疗神经病性触觉驱动性疼痛的药物。

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